DATASHEET SEARCH SITE | WWW.ALLDATASHEET.COM
Document overview
- Manufacturer or author: Provided By ALLDATASHEET.COM(FREE DATASHEET DOWNLOAD SITE)
- PDF pages: 112
Technical content
Digital Temperature Controller E5@C/E5@C-T Large White PV Display That's Easier to Read. Easy to Use, from Model Selection to Setup and Operation. New Plug-in Models That Are Convenient for Maintenance and Replacement as replacing temperature controllers is possible without changing wiring. New Models That Mount to DIN Track and Are Ideal for HMI/PLC Connections. And Programmable Models to Support a Wider Range of Applications. Digital Temperature Controller Programmable Temperature Controller (Digital Controller) E5CC E5CC-U E5EC E5AC E5CC-T E5EC-T E5AC-T E5DC E5GC DIN 48 × 24 mm E5@C-T Series E5@C Series DIN 48 × 48 mm DIN 48 × 96 mm DIN 96 × 96 mm 22.5 mm wide Mounts to DIN Track DIN 48 × 48 mm DIN 48 × 96 mm DIN 96 × 96 mm page 16 page 34 page 50 page 34 page 64 page 80 page 80 page 2
Easy Operation and High Performance of the E5@C Series in a Compact 48 × 24- mm Body A compact body of 48 × 24 × 90 mm (W × H × D) that is ideal for small equipment, laboratory instruments, and others. White PV display with a height of 10.5 mm for high visibility even with the compact body. Removable terminal block to simplify maintenance. Select from screw terminals or screwless clamp terminals for the wiring method. High-speed sampling at 50 ms. Easy connections to a PLC with programless communications. Set up the Controller without wiring the power supply by connecting to the computer with a Communications Conversion Cable (sold separately). Setup is easy with the CX-Thermo (sold separately). Main I/O Functions 48 × 24 mm Models with Screw Terminal Blocks E5GC-@6 Refer to Safety Precautions on page 104. Refer to your OMRON website for the most recent information on applicable safety standards. 48 × 24 mm Models with Screwless Clamp Terminal Blocks E5GC-@C Event Inputs None 1 Control Output 1 Relay output Voltage output (for driving SSR) Linear current output Auxiliary Outputs None 1 Dual displays: PV/SV 4-digit displays PF (shift) Key Temperature status display Simple programming Changed parameter display Display brightness setting Serial Communications None RS-485 E5GC Independent heating and cooling PID control 2 2 Work Bit Message Simple transfer output (only on models with liner current outputs) Sensor Input Indication Accuracy
- Thermocouple input: ±0.3% of PV
- Pt input: ±0.2% of PV
- Analog input: ±0.2% of FS Sampling Period
- 50 ms Universal input
- Thermocouple
- Pt
- Analog current/voltage This datasheet is provided as a guideline for selecting products. Be sure to refer to the following manuals for application precautions and other information required for operation before attempting to use the product. E5@C Digital Temperature Controllers User’s Manual (Cat. No. H174) E5@C Digital Temperature Controllers Communications Manual (Cat. No. H175) Digital Temperature Controller E5GC (48 × 24 mm)
Model Number Legend and Standard Models Model Number Legend *1 The control output can be used as a simple transfer output. *2 Only option 000 can be selected if an auxiliary output is zero. *3 Option 016 and 023 can be selected only if two auxiliary outputs are selected. *4 Option with HB and HS alarms (023) cannot be selected if a linear current output is selected for the control output. *5 Option 024 can be selected only if one auxiliary output is selected. Heating and Cooling Control
- Using Heating and Cooling Control A Control Output Assignment An auxiliary output is used as the cooling control output. B Control If PID control is used, you can set PID control separately for heating and cooling. This allows you to handle control systems with different heating and cooling response characteristics. Model A B C D E F MeaningControl outputs 1 and 2 No. of auxiliary outputs Power supply voltage Terminal type Input type Options E5GC 48 × 24 mm Control output 1 Control output 2 RX Relay output None QX Voltage output (for driving SSR) None *1 CX Linear current output None *2 0 None 1 1 2 2 A 100 to 240 VAC D 24 VAC/DC
6 Screw terminals (with cover)
C Screwless clamp terminals M Universal input HB alarm and HS alarm Communications Event inputs 000 --- --- --- 015 --- RS-485 --- *3 016 --- --- 1 *5 024 --- --- 2
Optional Products (Order Separately) USB-Serial Conversion Cable Communications Conversion Cable Note: Always use this product together with the E58-CIFQ2. This Cable is used to connect to the bottom-panel Setup Tool port. Current Transformers (CTs) Mounting Adapter Note: This Mounting Adapter is provided with the Digital Temperature Controller. Waterproof Packing Note: This Waterproof Packing is provided with the Digital Temperature Controller. Draw-out Jig CX-Thermo Support Software Note: CX-Thermo version 4.62 or higher is required for the E5GC. For the system requirements for the CX-Thermo, refer to information on the EST2-2C-MV4 on the OMRON website (www.ia.omron.com). Model E58-CIFQ2 Model E58-CIFQ2-E Hole diameter Model 5.8 mm E54-CT1 12.0 mm E54-CT3 Model Y92F-53 (2pcs) Model Y92S-P12 Model Y92F-55 Model EST2-2C-MV4
- Only four set points are selectable for event inputs. Power supply voltage A in model number: 100 to 240 VAC, 50/60 Hz D in model number: 24 VAC, 50/60 Hz; 24 VDC Operating voltage range 85% to 110% of rated supply voltage Sensor input Temperature input Thermocouple: K, J, T, E, L, U, N, R, S, B, W, or PL II Platinum resistance thermometer: Pt100 or JPt100 Infrared temperature sensor (ES1B): 10 to 70°C, 60 to 120°C, 115 to 165°C, or 140 to 260°C Analog input Current input: 4 to 20 mA or 0 to 20 mA Voltage input: 1 to 5 V, 0 to 5 V, or 0 to 10 V Input impedance Current input: 150 Ω max., Voltage input: 1 MΩ min. (Use a 1:1 connection when connecting the ES2-HB/ THB.) Control method ON/OFF control or 2-PID control (with auto-tuning) Control output Relay output SPST-NO, 250 VAC, 2 A (resistive load), electrical life: 100,000 operations, minimum applicable load: 5 V, 10 mA (reference value) Voltage output (for driving SSR) Output voltage 12 VDC ±20% (PNP), max. Load current: 21 mA, with short-circuit protection circuit Linear current output 4 to 20 mA DC/0 to 20 mA DC, load: 500 Ω max., resolution: Approx. 10,000 Auxiliary output Number of outputs 1 or 2 (depends on model) Output specifications SPST-NO relay outputs, 250 VAC, 2 A (resistive load), Electrical life: 100,000 operations, Minimum applicable load: 10 mA at 5 V (reference value) Event input Number of inputs 1 or 2 (depends on model) External contact input specifications Contact input ON: 1 kΩ max., OFF: 100 kΩ min. Non-contact input ON: Residual voltage 1.5 V max.; OFF: Leakage current 0.1 mA max. Current flow: approx. 7 mA per contact Setting method Digital setting using front panel keys Indication method 11-segment digital displays and individual indicators Character height: PV: 10.5 mm, SV: 5.0 mm Multi SP Up to eight set points (SP0 to SP7) can be saved and selected using the event inputs, key operations, or serial communications.* Bank switching None Other functions Manual output, heating/cooling control, loop burnout alarm, SP ramp, other alarm functions, heater burn- out (HB) alarm (including SSR failure (HS) alarm), 40% AT, 100% AT, MV limiter, input digital filter, self tuning, robust tuning, PV input shift, run/stop, protection functions, extraction of square root, MV change rate limit, logic operations, temperature status display, simple programming, moving average of input val- ue, display brightness setting, simple transfer output, and work bit message Ambient operating temperature −10 to 55°C (with no condensation or icing), For 3-year warranty: −10 to 50°C with standard mounting (with no condensation or icing) Ambient operating humidity 25% to 85% Storage temperature −25 to 65°C (with no condensation or icing) Altitude 2,000 m max. Recommended fuse T2A, 250 VAC, time-lag, low-breaking capacity Installation environment Installation Category II, Pollution Degree 2 (IEC 61010-1 compliant)
- Thermocouple/Platinum Resistance Thermometer (Universal inputs) Shaded settings are the default settings. The applicable standards for the input types are as follows: K, J, T, E, N, R, S, B: JIS C 1602-1995, IEC 60584-1 JPt100: JIS C 1604-1989, JIS C 1606-1989 L: Fe-CuNi, DIN 43710-1985 Pt100: JIS C 1604-1997, IEC 60751 U: Cu-CuNi, DIN 43710-1985 PL II: According to Platinel II el ectromotive force charts from BASF (previously Engelhard) W: W5Re/W26Re, ASTM E988-1990
- Analog input Sensor type Platinum resistance thermometer Thermocouple Infrared temperature sensor Sensor specifica- tion Pt100 JPt100 K J T E L U N R S B W PLII 10 to 70°C 60 to 120°C 115 to 165°C 140 to 260°C 2300 1800 1700 1600 1500 1400 1300 1200 1100 1000 900 800 700 600 500 400 300 200 100 -100 -200 2300 1800 1700 1700 1300 1300 1300 850 850 850 600 500.0 500.0 500.0 400.0 400 400.0 400 400.0 260 120 165 100.0 100.0 90 100 0.0 0.0 00 000000 -200 -199.9 -199.9 -200 -200 -199.9 -200 -200 -199.9 -200 Set value 01234 56789 1 0 1 1 1 2 1 3 1 4 1 5 1 6 1 7 1 8 1 9 2 0 2 1 2 2 2 3 2 4 Input type Current Voltage Input specification 4 to 20 mA 0 to 20 mA 1 to 5 V 0 to 5 V 0 to 10 V Setting range Usable in the following ranges by scaling: -1999 to 9999, -199.9 to 999.9, -19.99 to 99.99 or -1.999 to 9.999 Set value 25 26 27 28 29 Temperature range (°C)
Each alarm can be independently set to one of the following 17 alarm types. The default is 2: Upper limit. (See note.) Auxiliary outputs are allocated to alarms. ON delays and OFF delays (0 to 999 s) can also be specified. Note: In the default settings for models with HB or HS alarms, alarm 1 is set to a heater alarm (HA) and the Alarm Type 1 parameter is not displayed. To use alarm 1, set the output assignment to alarm 1. Set value Alarm type Alarm output operation Description of functionWhen alarm value X is positive When alarm value X is negative
0 Alarm function OFF Output OFF No alarm
1 Upper- and lower-limit *1 *2
Set the upward deviation in the set point for the alarm upper limit (H) and the lower deviation in the set point for the alarm lower limit (L). The alarm is ON when the PV is outside this deviation range. (default) Upper-limit Set the upward deviation in the set point by setting the alarm value (X). The alarm is ON when the PV is higher than the SP by the deviation or more.
3 Lower-limit
Set the downward deviation in the set point by setting the alarm value (X). The alarm is ON when the PV is lower than the SP by the deviation or more.
4 Upper- and lower-limit
range *1 Set the upward deviation in the set point for the alarm upper limit (H) and the lower deviation in the set point for the alarm lower limit (L). The alarm is ON when the PV is inside this de- viation range.
5 Upper- and lower-limit
with standby sequence *1 *4 A standby sequence is added to the upper- and lower-limit alarm (1). *6
6 Upper-limit with standby
sequence A standby sequence is added to the upper-limit alarm (2). *6
7 Lower-limit with standby
sequence A standby sequence is added to the lower-limit alarm (3). *6
8 Absolute-value upper-lim-
The alarm will turn ON if the process value is larger than the alarm value (X) regardless of the set point.
9 Absolute-value lower-limit The alarm will turn ON if the process value is smaller than the
alarm value (X) regardless of the set point. it with standby sequence A standby sequence is added to the absolute-value upper- limit alarm (8). *6 with standby sequence A standby sequence is added to the absolute-value lower- limit alarm (9). *6 LBA (alarm 1 type only) -* 7
13 PV change rate alarm - *8
14 SP absolute-value
This alarm type turns ON the alarm when the set point (SP) is higher than the alarm value (X).
15 SP absolute-value
This alarm type turns ON the alarm when the set point (SP) is lower than the alarm value (X).
16 MV absolute-value
upper-limit alarm *9 Standard Control Standard Control This alarm type turns ON the alarm when the manipulated variable (MV) is higher than the alarm value (X).Heating/Cooling Control (Heating MV) Heating/Cooling Control (Heating MV) Always ON
17 MV absolute-value
lower-limit alarm *9 Standard Control Standard Control This alarm type turns ON the alarm when the manipulated variable (MV) is lower than the alarm value (X).Heating/Cooling Control (Cooling MV) Heating/Cooling Control (Cooling MV) Always ON ON OFF PV SP LH SP XON OFF PV SP XON OFF PV SP XON OFF PV SP XON OFF PV SP LHON OFF PV SP LHON OFF PV SP XON OFF PV SP XON OFF PVSP XON OFF PV SP XON OFF PV0 XON OFF PV XON OFF PV0 XON OFF PV XON OFF PV0 XON OFF PV XON OFF PV0 XON OFF PV XON OFF PV XON OFF SP XON OFF SP0 XON OFF SP XON OFF SP XON OFF MV XON OFF MV XON OFF MV XON OFF MV XON OFF MV XON OFF MV
*1 With set values 1, 4, and 5, t he upper- and lower-limit values can be set independently for each alarm type, and are expressed as “L” and “H.” *2 Set value: 1, Upper- and lower-limit alarm *3 Set value: 4, Upper- and lower-limit range *4 Set value: 5, Upper- and lower-limit with standby sequence For Upper- and Lower-Limit Alarm Described Above at *2
- In cases 1 and 2 above, the alarm is always OFF if the upper- and lower-limit hysteresis overlaps.
- In case 3, the alarm is always OFF. *5 Set value: 5, Upper- and lower- limit alarm with standby sequence The alarm is always OFF if upper- and lower-limit hysteresis overlaps. *6 Refer to the E5 @C Digital Temperature Controllers User’s Manual (Cat. No. H174) for information on the operation of the standby sequence. *7 Refer to the E5 @C Digital Temperature Controllers User’s Manual (Cat. No. H174) for information on the LBA. *8 Refer to the E5 @C Digital Temperature Controllers User’s Manual (Cat. No. H174) for information on the PV change rate alarm. *9 When heating/cooling control is performed, the MV absolute- value upper-limit alarm functions only for the heating operation and the MV absolute-value lower-limit alarm functions only for the cooling operation. LH S P LHSP LHS P LHS P L H SP Case 1 Case 2 Case 3 (Always OFF) H<0, L>0 H>0, L<0 H<0, L<0 H<0, L>0 H>0, L<0 LH S P LHSP LHS P L L HS P H SP Case 1 Case 2 Case 3 (Always ON) H<0, L<0 H<0, L>0 H>0, L<0 H<0, L>0 H>0, L<0
*1 The indication accuracy of K thermocouples in the −200 to 1,300°C range, T and N thermocouples at a temperature of −100°C max., and U and L thermocouples at any temperature is ±2°C ±1 digit max. The indication accuracy of B thermocouples at a temperature of 400°C max. is not specified. The indication accuracy of B thermocouples at a temperature of 400 to 800°C is ±3°C max. The indication accuracy of R and S thermocouples at a temperature of 200°C max. is ±3°C ±1 digit max. The indication accuracy of W thermocouples is (±0.3% of PV or ±3°C, whichever is greater) ±1 digit max. The indication accuracy of PLII thermocouples is (±0.3% of PV or ±2°C, whichever is greater) ±1 digit max. *2 Ambient temperature: −10 °C to 23°C to 55°C, Voltage range: −15% to 10% of rated voltage *3 K thermocouple at −100°C max.: ±10°C max. *4 The unit is determined by the setting of the Integral/Derivative Time Unit parameter. *5 External serial communications (RS-485) and USB-Serial Conversion Cable communications can be used at the same time. Indication accuracy (at the temperature of 23°C) Thermocouple: ( ±0.3 % of indication value or ±1°C, whichever is greater) ±1 digit max.*1 Platinum resistance thermometer: (±0.2 % of indication value or ±0.8°C, whichever is greater) ±1 digit max. Analog input: ±0.2% FS ±1 digit max. CT input: ±5% FS ±1 digit max. Influence of temperature *2 Thermocouple input (R, S, B, W, PL II): (±1% of indication value or ±10°C, whichever is greater) ±1 digit max. Other thermocouple input: (±1% of indication value or ±4°C, whichever is greater) ±1 digit max. *3 Platinum resistance thermometer: (±1% of indication value or ±2°C, whichever is greater) ±1 digit max. Analog input: ±1% FS ±1 digit max. CT input: ±5% FS ±1 digit max. Influence of voltage *2 Input sampling period 50 ms Hysteresis Temperature input: 0.1 to 999.9°C or °F (in units of 0.1°C or °F) Analog input: 0.01% to 99.99% FS (in units of 0.01% FS) Proportional band (P) Temperature input: 0.1 to 999.9°C or °F (in units of 0.1°C or °F) Analog input: 0.1% to 999.9% FS (in units of 0.1% FS) Integral time (I) 0 to 9999 s (in units of 1 s), 0.0 to 999.9 s (in units of 0.1 s) *4 Derivative time (D) 0 to 9999 s (in units of 1 s), 0.0 to 999.9 s (in units of 0.1 s) *4 Proportional band (P) for cooling Temperature input: 0.1 to 999.9°C or °F (in units of 0.1°C or °F) Analog input: 0.1% to 999.9% FS (in units of 0.1% FS) Integral time (I) for cooling 0 to 9999 s (in units of 1 s), 0.0 to 999.9 s (in units of 0.1 s) *4 Derivative time (D) for cooling 0 to 9999 s (in units of 1 s), 0.0 to 999.9 s (in units of 0.1 s) *4 Control period 0.1, 0.2, 0.5, 1 to 99 s (in units of 1 s) Manual reset value 0.0% to 100.0% (in units of 0.1%) Alarm setting range −1,999 to 9,999 (decimal point position depends on input type) Influence of signal source resis- Insulation resistance 20 MΩ min. (at 500 VDC) Dielectric strength 100 to 240 VAC: 3,000 VAC, 50/60 Hz for 1 min between terminals of different charge
24 VAC/DC: 2,300 VAC, 50/60 Hz for 1 min between terminals of different charge
Vibration Malfunction 10 to 55 Hz, 20 m/s2 for 10 min each in X, Y and Z directions Resistance 10 to 55 Hz, 20 m/s2 for 2 hr each in X, Y, and Z directions Shock Malfunction 100 m/s2, 3 times each in X, Y, and Z directions Resistance 300 m/s2, 3 times each in X, Y, and Z directions Weight Controller: Approx. 80 g, Adapter: Approx. 4 g × 2 Degree of protection Front panel: IP66, Rear case: IP20, Terminals: IP00 Memory protection Non-volatile memory (number of writes: 1,000,000 times) Setup Tool CX-Thermo version 4.62 or higher Setup Tool port E5GC side panel: An E58-CIFQ2 USB-Serial Conversion Cable is used to connect a USB port on the com- puter. *5 E5GC bottom panel: An E58-CIFQ2 USB-Serial Conversion Cable and E58-CIFQ2-E Conversion Cable are used together to connect a USB port on the computer.*5 Standards Approved standards UL 61010-1, Korean Radio Waves Act (Act 10564) Conformed standards EN 61010-1 (IEC 61010-1): Pollution Degree 2 , overvoltage category II EMC EMI: EN61326 Radiated Interference Electromagnetic Field Strength: EN55011 Group 1, class A Noise Terminal Voltage: EN55011 Group 1, class A EMS: EN61326 ESD Immunity: EN61000-4-2 Electromagnetic Field Immunity: EN61000-4-3 Burst Noise Immunity: EN61000-4-4 Conducted Disturbance Immunity: EN61000-4-6 Surge Immunity: EN61000-4-5 Voltage Dip/Interrupting Immunity: EN61000-4-11
USB-Serial Conversion Cable Windows is a registered trademark of Microsoft Corporation in the United States and or other countries. * Use a high-power port for the USB port. Note: A driver must be installed on the computer. Refer to the Instruction Manual included with the Cable for the installation procedure. Communications Specifications * The baud rate, data bit length, stop bit length, and vertical parity can be individually set using the Communications Setting Level. Communications Functions MELSEC is a registered trademark of Mitsubishi Electric Corporation. KEYENCE is a registered trademark of Keyence Corporation. * Both the programless communications and the component communications support the copying. Current Transformer (Order Separately) Ratings Heater Burnout Alarms and SSR Failure Alarms *1 For heater burnout alarms, the heater current will be measured when the control output is ON, and the output will turn ON if the heater current is lower than the set value (i.e., heater burnout detection current value). *2 For SSR failure alarms, the heater current will be measured when the control output is OFF, and the output will turn ON if the heater current is higher than the set value (i.e., SSR failure detection current value). *3 The value is 30 ms for a control period of 0.1 s or 0.2 s. *4 The value is 35 ms for a control period of 0.1 s or 0.2 s. Electrical Life Expectancy Curve for Control Output Relay (Reference Values) Applicable OS Windows XP, Vista, or 7 Applicable software CX-Thermo version 4.62 or higher Applicable models E5@C-T Series, E5@C Series, and E5CB Series USB interface standard Conforms to USB Specification 2.0 DTE speed 38,400 bps Connector specifications Computer: USB (Type A plug) Digital Temperature Controller: Special serial con- nector Power supply Bus power (Supplied from the USB host controller) * Power supply voltage 5 VDC Current consumption 450 mA max. Output voltage 4.7±0.2 VDC (Supplied from USB-Serial Conver- sion Cable to the Digital Temperature Controller.) Output current 250 mA max. (Supplied from USB-Serial Conver- sion Cable to the Digital Temperature Controller.) Ambient operating temperature 0 to 55°C (with no condensation or icing) Ambient operating humidity 10% to 80% Storage temperature −20 to 60°C (with no condensation or icing) Storage humidity 10% to 80% Altitude 2,000 m max. Weight Approx. 120 g Transmission line connection method RS-485: Multidrop Communications RS-485 (two-wire, half duplex) Synchronization method Start-stop synchronization Protocol CompoWay/F, or Modbus Baud rate* 9,600, 19,200, 38,400, or 57,600 bps Transmission code ASCII Data bit length * 7 or 8 bits Stop bit length * 1 or 2 bits Error detection Vertical parity (none, even, odd) Block check character (BCC) with CompoWay/F or CRC-16 with Modbus Flow control None Interface RS-485 Retry function None Communications buffer 217 bytes Communications response wait time 0 to 99 ms Default: 20 msProgramless communica- tions You can use the memory in the PLC to read and write E5@C parameters, start and stop operation, etc. The E5@C automatically performs communications with PLCs. No communications programming is required. Number of connected Digital Temperature Controllers: 32 max. (Up to 16 for the FX Series) Applicable PLCs: OMRON PLCs CS Series, CJ Series, or CP Series Mitsubishi Electric PLCs MELSEC Q Series, L Series, or FX Series (compati- ble with the FX2 or FX3 (excluding the FX1S)) KEYENCE PLCs KEYENCE KV Series Component Communica- tions When Digital Temperature Controllers are connected, set points and RUN/STOP commands can be sent from the Dig- ital Temperature Controller that is set as the master to the Digital Temperature Controllers that are set as slaves. Slope and offsets can be set for the set point. Number of connected Digital Temperature Controllers: 32 max. (including master) Copying* When Digital Temperature Controllers are connected, the pa- rameters can be copied from the Digital Temperature Control- ler that is set as the master to the Digital Temperature Controllers that are set as slaves. Dielectric strength 1,000 VAC for 1 min Vibration resistance 50 Hz, 98 m/s2 Weight E54-CT1: Approx. 11.5 g, E54-CT3: Approx. 50 g Accessories (E54-CT3 only) Armatures (2) Plugs (2) CT input (for heater current detection) Models with detection for single-phase heat- ers: One input Maximum heater current 50 A AC Input current indication accuracy ±5% FS ±1 digit max. Heater burnout alarm setting range *1 0.1 to 49.9 A (in units of 0.1 A) Minimum detection ON time: 100 ms *3 SSR failure alarm setting range *2 0.1 to 49.9 A (in units of 0.1 A) Minimum detection OFF time: 100 ms *4 Switching current (A) Life (× 104 operations) 500 300 200 100 0.1 0.2 0.5 0.3 1 2 3 5 10 E5GC
250 VAC, 30 VDC
(resistive load) cosφ = 1
Note: 1. The application of the terminals depends on the model. 2. Do not wire the terminals that are shown with a gray background. 3. When complying with EMC standards, the cable that connects the sensor must be 30 m or less. If the cable length exceeds 30 m, compliance with EMC standards will not be possible. 4. Connect M3 crimped terminals. Isolation/Insulation Block Diagrams Note: Auxiliary outputs 1 to 2 are not insulated. Linear current output 0 to 20 mA DC 4 to 20 mA DC Load: 500 Ω max. Voltage output (for driving SSR)
12 VDC, 21 mA
250 VAC, 2 A
(resistive load) (resistive load) Relay outputs Control Outputs Auxiliary outputs 1, 2 Terminal type The E5GC is set for a K-type thermocouple (input type = 5) by default. An input error (s.err) wil occur if the input type setting does not agree with the temperature sensor. Check the input type. CT 789 EV2 EV1 024 Event inputs 1 and 2 789 015 Communications (RS-485) RS-485 B(+) A(−) 789 EV1 016 Event input 1 789 023 CT input 100 to 240 VAC
24 VAC/DC
(no polarity) RX Relay output RQ C QX Voltage output (for driving SSR) CX Linear current output 10 11 12 V V +− +− 10 11 12 mA I 10 11 12TC 10 11 12Pt BA B 789 1 0 1 1 1 2 123456 (6) Options (3) Input Power Supply (1) Control Outputs Auxiliary output 1 Auxiliary output 2 (2) Auxiliary Outputs Auxiliary output 1 Auxiliary output 1 Auxiliary outputs 1, 2 (5) Sensor (Temperature/ Analog) Input Sensor input and CT input Communications and event inputs Voltage output (for driving SSR) and linear current output Relay output Auxiliary outputs 1 and 2 : Reinforced insulation : Functional isolation Power supply
Wires: AWG24 to AWG18 (equal to a cros s-sectional area of 0.205 to 0.823 mm2) braided or solid wires Nomenclature Controllers with Screw Terminal Blocks Terminal type: Forked or round crimped terminals Tightening torque for all terminals: 0.43 to 0.58 N·m 5.8 mm max. 5.8 mm max. E5GC-@6 Controllers with Screw Terminal Blocks (M3 Screws) 0.8 to 1.4 mm 8 to 12 mm 8 to 12 mm Controllers with Screwless Clamp Terminals Blocks Wire stripping length: 8 to 12 mm Ferrules: 8 to 12 mm E5GC-@C Controllers with Screwless Clamp Terminal Blocks Left-panel Setup Tool port Left Side View of the E5GC Bottom View of E5GC Bottom-panel Setup Tool port Front panel Use the U D Keys to set the parameter. PV or specified parameter SP or specified parameter value Use the M Key to change to another parameter. No.2 display Use S Key to change the digit (default setting). No. 1 display Operation indicators Temperature unit Press O Key once to go to Adjustment Level. Press O Key for at least 3 seconds to go to the Initial Setting Level. E5GC
Dimensions (Unit: mm) Controllers 40 min Mounted Separately Horizontally Group Mounted +1.0 22.2+0.3 22.2+0.3 n: Number of mounted Controllers (2 ≤ n ≤ 6) Terminal Cover (Accessory) Mounting Adapter (Accessory) Waterproof Packing (Accessory) 222224 63.6 40.8 44.8 E5GC-@6 Controllers with Screw Terminal Blocks Use two Mounting Adapters, either on the top and bottom or on the right and left. Setup Tool ports are provided as standard feature. Use these ports to connect a computer to the Digital Temperature Controller. The E58- CIFQ2 USB-Serial Conversion Cable is required to connect to the port on the side panel. The E58-CIFQ2 USB-Serial Conversion Cab le and E58-CIFQ2-E Communications Conversion Cable are required to connect to the port on the bottom panel. (You cannot leave either port connected constantly during operation.) To install the Temperature Controller, insert it into a square hol e in a panel with a thickness of 1 to 8 mm, and then insert the enclosed adapter so that it locks into the grooves on the top and bottom or on the left and right of the rear case. Tighten the two mounting screws on the top and bottom or on the right and left of the Mounting Adapters alternately little by little to main- tain a balance, and tighten them to a torque of between 0.29 and 0.39 N·m. When two or more Temperature Controllers are mounted, make sure that the surrounding temperature does not exceed the allowable operating temperature range given below. Horizontal group mounting: −10 to 55°C Use Temperature Controllers with Screwless Cla mp Terminal Blocks for vertical group mounting. To mount the Temperature Controller so that it is waterproof, insert the Waterproof Packing onto the Temperature Controller. Group mounting does not allow waterproofing. Mounting Adapter (Accessory) Waterproof Packing (Accessory) 222224 63.6 48 49 3 40.8 44.8 40 min +1.0 +0L2=(24×n-1.5) 45 +0.6 45+0.6 22.2+0.3 22.2+0.3 Mounted Separately Horizontally Group Mounted Vertically Group Mounted +1.0 +0L1=(48×n-2.5) n: Number of mounted Controllers (2 ≤ n ≤ 6) E5GC-@C Controllers with Screwless Clamp Terminal Blocks Use two Mounting Adapters, either on the top and bottom or on the right and left. Setup Tool ports are provided as standard feature. Use these ports to connect a computer to the Digital Temperature Controller . The E58- CIFQ2 USB-Serial Conversion Cable is required to connect to the port on the side panel. The E58-CIFQ2 USB-Serial Conversion Cable and E58-CIFQ2-E Communications Conversion Cable are required to connect to the port on the bottom panel. (You cannot leave either port connected constantly during operation.) To install the Temperature Controller, insert it into a square hole in a panel with a thickness of 1 to 8 mm, and then insert the enclosed adapter so that it locks into the grooves on the top and bottom or on the left and right of the rear case. Tighten the two mounting screws on the top and bottom or on the right and left of the Mounting Adapters alternately little by little to main- tain a balance, and tighten them to a torque of between 0.29 and 0.39 N·m. When two or more Temperature Controllers are mounted, make sure that the surrounding temperature does not exceed the allowable operating temperature range given below. Horizontal group mounting: −10 to 55°C Vertical group mounting of two Controllers: −10 to 45°C Vertical group mounting of three or more Controllers: −10 to 40°C If you use vertical group mounting, you cannot draw out the interior body of the Controller. To mount the Temperature Controller so that it is waterproof, insert the Waterproof Packing onto the Temperature Controller. Group mounting does not allow waterproof- ing.
Accessories (Order Separately)
- Current Transformers (2110) 250 263 1510 USB connector (type A plug) Serial connector LED (SD) LED (PWR) LED (RD)
- USB-Serial Conversion Cable E58-CIFQ2 Connecting to the E58-CIFQ2 USB-Serial Conversion CableConversion Cable (1510) 250 (2110) E58-CIFQ2 (Order separately) Conversion Cable 263 1510
- Conversion Cable E58-CIFQ2-E Note: Always use this product together with the E58-CIFQ2. E54-CT3 Accessories Armature 15 5.8 dia. 25 3 10.5 2.8 7.5 Two, 3.5 dia. 40 × 40 12 dia. 2.36 dia. Two , M3 holes (depth: 4) Approx. 3 dia. (22) Approx. 6 dia. Plug Armature Lead E54-CT1 E54-CT3 Connection Example P l u g Thru-current (Io) vs. Output Voltage (Eo) (Reference Values) E54-CT1 Maximum continuous heater current: 50 A (50/60 Hz) Number of windings: 400 ±2 Winding resistance: 18 ±2 Ω 1 10 100mA 1 10 100 1,000A 100V 100mV Thru-current (Io) A (r.m.s.) Frequency: 50 Hz 100Ω RL=10Ω 100μV 1kΩ Distortion factor 10% Output voltage (Eo) V (r.m.s.) Thru-current (Io) vs. Output Voltage (Eo) (Reference Values) E54-CT3 Maximum continuous heater current: 120 A (50/60 Hz) (Maximum continuous heater current for an OMRON Digital Temperature Con- troller is 50 A.) Number of windings: 400±2 Winding resistance: 8±0.8 Ω 1 10 100mA 1 10 100 1,000A 100V 100mV Thru-current (Io) A (r.m.s.) Frequency: 50 Hz 1kΩ 100Ω 50Ω RL=10Ω 500Ω 100μV Distortion factor 10% Output voltage (Eo) V (r.m.s.)
- Mounting Adapter Y92F-53 (Two provided.)
- Waterproof Packing Y92S-P12
- Draw-out Jig Y92F-55 34.7 11.8 9.4 One pair is provided with the Termperature Controller. Order this Adapter separately if it becomes lost or damaged. The Waterproof Packing is provided with the Temperature Controller. Order the Waterproof Packing separately if it becomes lost or damaged. The Waterproof Packing can be used to achieve an IP66 degree of protection. (Deterioration, shrinking, or hardening of the waterproof packing may occur depending on the operating environment. Therefore, periodic replacement is recommended to ensure the level of waterproofing specified in IP66. The time for periodic replacement depends on the operating environment. Be sure to confirm this point at your site. Consider three years a rough standard.) The Waterproof Packing does not need to be attached if a waterproof structure is not required. 28.7 15 30.5 32.9 1.4 27.4 Use this Draw-out Jig to remove the interior body of the Digital Temperature Controller from the case to perform maintenance without removing the terminal wiring.
Digital Temperature Controller E5CC/E5CC-U (48 × 48 mm) Large White PV Display That’s Easier to Read. Easy to Use, from Model Selection to Setup and Operation. A Complete Range of I/O Capacities, Functions, and Performance. Handles More Applications. The white PV display with a height of 15.2 mm improves visibility. High-speed sampling at 50 ms. Models are available with up to 3 auxiliary outputs, up to 4 event inputs, a transfer output, and a remote SP input to cover a wide range of applications. E5CC: Short body with depth of only 60 mm. Set up the Controller without wiring the power supply by connecting to the computer with a Communications Conversion Cable (sold separately). Setup is easy with the CX-Thermo (sold separately). Easy connections to a PLC with programless communications. Use component communications to link Temperature Controllers to each other. Main I/O Functions 48 × 48 mm E5CC Refer to Safety Precautions on page 104. Refer to your OMRON website for the most recent information on applicable safety standards. 48 × 48 mm E5CC-U Sensor Input Dual displays: PV/SV 4-digit displays E5CC/E5CC-U Universal input
- Thermocouple
- Pt
- Analog current/voltage Indication Accuracy
- Thermocouple input: ±0.3% of PV
- Pt input: ±0.2% of PV
- Analog input: ±0.2% of FS Sampling Period
- 50 ms Event Inputs <E5CC>
- None
- 2
- 4 Remote SP Input Control Output 1
- Relay output
- Voltage output (for driving SSR)
- Linear current output Control Output 2 Transfer Output
- PF (shift) Key
- Temperature status display
- Simple programming
- Independent heating and cooling PID control
- Changed parameter display
- Display brightness setting Auxiliary Outputs Serial Communications <E5CC-U>
- None <E5CC>
- None
- 1 <E5CC-U>
- None <E5CC>
- None
- RS-485 <E5CC-U>
- None <E5CC>
- None
- Voltage output (for driving SSR) <E5CC-U>
- None <E5CC>
- 3 <E5CC-U>
- None
- 1
- 2 <E5CC>
- None
- 1 <E5CC-U>
- None This datasheet is provided as a guideline for selecting products. Be sure to refer to the following manuals for application precautions and other information required for operation before attempting to use the product. E5@C Digital Temperature Controllers User’s Manual (Cat. No. H174) E5@C Digital Temperature Controllers Communications Manual (Cat. No. H175)
Model Number Legend and Standard Models Model Number Legend
- Models with Screw Terminals *1. Options with HB and HS alarms (001 and 003) cannot be selected if a linear current output is selected for the control output . *2. The control output cannot be used as a transfer output. *3. Option 004 can be selected only when "CX" is selected for the control outputs. Heating and Cooling Control
- Using Heating and Cooling Control A Control Output Assignment If there is no control output 2, an auxiliary output is used as the cooling control output. If there is a control output 2, the two control outputs are used for heating and cooling. (It does not matter which output is used for heating and which output is used for cooling.) B Control If PID control is used, you can set PID control separately for heating and cooling. This allows you to handle control systems with different heating and cooling response characteristics. Model A B C D E F MeaningControl outputs 1 and 2 No. of auxiliary outputs Power supply voltage Terminal type Input type Options E5CC 48 × 48 mm Control output 1 Control output 2 RX Relay output None QX Voltage output (for driving SSR) None *1 *3 CX Linear current output *2 None QQ Voltage output (for driving SSR) Voltage output (for driving SSR) CQ Linear current output *2 Voltage output (for driving SSR) 3 3 (one common) A 100 to 240 VAC D 24 VAC/DC
5 Screw terminals (with cover)
HS alarm Communications Event inputs Remote SP Input Transfer output *1 003 (for 3-phase heaters) RS-485 --- --- --- 006 --- --- 2 Provided. 007 --- --- 2 Provided. ---
- Plug-in Models E5CC-@@ @ @U M -000 (Example: E5CC-RW0AUM-000) AB C D E F * The control output can be used as a simple transfer output for the Digital Temperature Controllers manufactured in May 2014 or later. List of Models Heating and Cooling Control
- Using Heating and Cooling Control A Control Output Assignment An auxiliary output is used as the cooling control output. B Control If PID control is used, you can set PID control separately for heating and cooling. This allows you to handle control systems with different heating and cooling response characteristics. Model A B C D E F MeaningControl outputs 1 and 2 No. of auxiliary outputs Power supply voltage Terminal type Input type Options E5CC 48 × 48 mm Control output 1 Control output 2 RW Relay output (SPDT) None QX Voltage output (for driving SSR) None CX Linear current output* None
0 None
2 2 (one common) A 100 to 240 VAC D 24 VAC/DC U Plug-in model M Universal input HB alarm and HS alarm Communi- cations Event inputs Remote SP Input Transfer out- put Control output No. of auxiliary outputs Options Model Model HB alarm and HS alarm No. of event inputs Communications Power supply voltage Power supply voltage 100 to 240 VAC 24 VAC/DC Relay output --- --- --- --- E5CC-RW0AUM-000 E5CC-RW0DUM-000
1 E5CC-RW1AUM-000 E5CC-RW1DUM-000
2 E5CC-RW2AUM-000 E5CC-RW2DUM-000
(for driving SSR) --- --- --- --- E5CC-QX0AUM-000 E5CC-QX0DUM-000
1 E5CC-QX1AUM-000 E5CC-QX1DUM-000
2 E5CC-QX2AUM-000 E5CC-QX2DUM-000
--- --- --- --- E5CC-CX0AUM-000 E5CC-CX0DUM-000
1 E5CC-CX1AUM-000 E5CC-CX1DUM-000
2 E5CC-CX2AUM-000 E5CC-CX2DUM-000
Optional Products (Order Separately) USB-Serial Conversion Cable Terminal Covers (for E5CC) Note: The Terminal Covers E53-COV23 are provided only with E5CC Controllers. The E53-COV10 cannot be used. Refer to page 28 for the mounted dimensions. Waterproof Packing Note: The Waterproof Packing is provided only with E5CC Controllers. The E5CC-U cannot be waterproofed even if the Waterproof Packing is attached. Current Transformers (CTs) Adapter Note: Use this Adapter when the panel has already been prepared for an E5B@ Controller. Waterproof Cover Mounting Adapter Note: This Mounting Adapter is provided with the Digital Temperature Controller. DIN Track Mounting Adapter Sockets (for E5CC-U) Front Covers CX-Thermo Support Software Note: CX-Thermo version 4.5 or higher is required for the E5CC. CX-Thermo version 4.61 or higher is required for the E5CC-U. For the system requirements for the CX-Thermo, refer to information on the EST2-2C-MV4 on the OMRON website (www.ia.omron.com). Model E58-CIFQ2 Model E53-COV17 E53-COV23 (3pcs) Model Y92S-P8 Hole diameter Model 5.8 mm E54-CT1 12.0 mm E54-CT3 Model Y92F-45 Model Y92A-48N Model Y92F-49 Model Y92F-52 Type Model Front-connecting Socket P2CF-11 Front-connecting Socket with Finger Protection P2CF-11-E Back-connecting Socket P3GA-11 Terminal Cover for Back-connecting socket with Finger Protection Y92A-48G Type Model Hard Front Cover Y92A-48H Soft Front Cover Y92A-48D Model EST2-2C-MV4
- There are no optional functions for the E5CC-U. Refer to Model Number Legend and List of Models on page 18. Power supply voltage A in model number: 100 to 240 VAC, 50/60 Hz D in model number: 24 VAC, 50/60 Hz; 24 VDC Operating voltage range 85% to 110% of rated supply voltage Power consumption Models with option selection of 000:5.2 VA max. at 100 to 240 VAC, and 3.1 VA max. at 24 VAC or 1.6 W max. at 24 VDC Sensor input Temperature input Thermocouple: K, J, T, E, L, U, N, R, S, B, W, or PL II Platinum resistance thermometer: Pt100 or JPt100 Infrared temperature sensor (ES1B): 10 to 70°C, 60 to 120°C, 115 to 165°C, or 140 to 260°C Analog input Current input: 4 to 20 mA or 0 to 20 mA Voltage input: 1 to 5 V, 0 to 5 V, 0 to 10 V,or 0 to 50 mV (The 0 to 50 mV range applies to the E5CC-U only for those manufactured in May 2014 or later.) Input impedance Current input: 150 Ω max., Voltage input: 1 MΩ min. (Use a 1:1 connection when connecting the ES2-HB/THB.) Control method ON/OFF control or 2-PID control (with auto-tuning) Control output Relay output E5CC: SPST-NO, 250 VAC, 3 A (resistive load), electrical life: 100,000 operations, minimum ap- plicable load: 5 V, 10 mA (reference value) E5CC-U: SPDT, 250 VAC, 3 A (resistive load), elec trical life: 100,000 operations, minimum applica- ble load: 5 V, 10 mA (reference value) Voltage output (for driving SSR) Output voltage: 12 VDC ±20% (PNP), max. load current: 21 mA, with short-circuit protection circuit Linear current output 4 to 20 mA DC/0 to 20 mA DC, load: 500 Ω max., resolution: approx. 10,000 Auxiliary output Number of outputs E5CC: 3 E5CC-U: 1 or 2 (depends on model) Output specifications SPST-NO relay outputs, 250 VAC, Models with 1 or 2 outputs: 3 A (resistive load), or Models with 3 outputs: 2 A (resistive load), Electrical life: 100,000 operations, Minimum applicable load: 10 mA at
5 V (reference value)
input* Number of inputs 2 or 4 (depends on model) External contact input specifications Contact input: ON: 1 kΩ max., OFF: 100 kΩ min. Non-contact input: ON: Residual voltage: 1.5 V max., OFF: Leakage current: 0.1 mA max. Current flow: Approx. 7 mA per contact Transfer output* Number of outputs 1 (only on models with a transfer output) Output specifications Current output: 4 to 20 mA DC, load: 500 Ω max., resolution: approx. 10,000 Linear voltage output: 1 to 5 VDC, load: 1 kΩ min., resolution: Approx. 10,000 Setting method Digital setting using front panel keys Remote SP input* Current input: 4 to 20 mA DC or 0 to 20 mA DC (input impedance: 150 Ω max.) Voltage input: 1 to 5 V, 0 to 5 V, or 0 to 10 V (input impedance: 1 MΩ min.) Indication method 11-segment digital display and individual indicators Character height: PV: 15.2 mm, SV: 7.1 mm Multi SP* Up to eight set points (SP0 to SP7) can be saved and selected using the event inputs, key operations, or serial communications. Bank switching None Other functions Manual output, heating/cooling control, loop burnout alarm, SP ramp, other alarm functions, heater burnout (HB) alarm (including SSR failure (HS) alarm), 40% AT, 100% AT, MV limiter, input digital filter, self tuning, robust tuning, PV input shift, run/stop, protection functions, extraction of square root, MV change rate limit, logic operations, temperature status display, simple programming, moving average of input value, and display brightness setting Ambient operating temperature −10 to 55°C (with no condensation or icing), For 3-year warranty: −10 to 50°C with standard mounting (with no condensation or icing) Ambient operating humidity 25% to 85% Storage temperature -25 to 65°C (with no condensation or icing) Altitude 2,000 m max. Recommended fuse T2A, 250 VAC, time-lag, low-breaking capacity Installation environment Installation Category II, Pollution Degree 2 (IEC 61010-1 compliant)
- Thermocouple/Platinum Resistance Thermometer (Universal inputs) Shaded settings are the default settings. The applicable standards for the input types are as follows: K, J, T, E, N, R, S, B: JIS C 1602-1995, IEC 60584-1 JPt100: JIS C 1604-1989, JIS C 1606-1989 L: Fe-CuNi, DIN 43710-1985 Pt100: JIS C 1604-1997, IEC 60751 U: Cu-CuNi, DIN 43710-1985 PL II: According to Platinel II electromotive force charts from BASF (previously Engelhard) W: W5Re/W26Re, ASTM E988-1990
- Analog input * The range applies to the E5CC-U only for those manufactured in May 2014 or later. Sensor type Platinum resistance thermometer Thermocouple Infrared temperature sensor Sensor specifica- tion Pt100 JPt100 K J T E L U N R S B W PLII 10 to 70°C 60 to 120°C 115 to 165°C 140 to 260°C 2300 1800 1700 1600 1500 1400 1300 1200 1100 1000 900 800 700 600 500 400 300 200 100 -100 -200 2300 1800 1700 1700 1300 1300 1300 850 850 850 600 500.0 500.0 500.0 400.0 400 400.0 400 400.0 260 120 165 100.0 100.0 90 100 0.0 0.0 00 000000 -200 -199.9 199.9 -200 -200 -199.9 -200 -200 -199.9 -200 Set value 01234 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 Input type Current Voltage Input specification 4 to 20 mA 0 to 20 mA 1 to 5 V 0 to 5 V 0 to 10 V 0 to 50 mV* Setting range Usable in the following ranges by scaling: -1999 to 9999, -199.9 to 999.9, -19.99 to 99.99 or -1.999 to 9.999 Set value 25 26 27 28 29 30 Temperature range (°C)
Each alarm can be independently set to one of the following 19 alarm types. The default is 2: Upper limit. (see note.) Auxiliary outputs are allocated for alarms. ON delays and OFF delays (0 to 999 s) can also be specified. Note: In the default settings for models with HB or HS alarms, alarm 1 is set to a heater alarm (HA) and the Alarm Type 1 parameter is not displayed. To use alarm 1, set the output assignment to alarm 1. Set value Alarm type Alarm output operation Description of functionWhen alarm value X is positive When alarm value X is negative Set the upward deviation in the set point for the alarm upper limit (H) and the lower deviation in the set point for the alarm lower limit (L). The alarm is ON when the PV is outside this deviation range. (default) Upper-limit Set the upward deviation in the set point by setting the alarm value (X). The alarm is ON when the PV is higher than the SP by the deviation or more. Set the downward deviation in the set point by setting the alarm value (X). The alarm is ON when the PV is lower than the SP by the deviation or more. range *1 Set the upward deviation in the set point for the alarm upper limit (H) and the lower deviation in the set point for the alarm lower limit (L). The alarm is ON when the PV is inside this de- viation range. with standby sequence *1 *4 A standby sequence is added to the upper- and lower-limit alarm (1). *6 sequence A standby sequence is added to the upper-limit alarm (2). *6 sequence A standby sequence is added to the lower-limit alarm (3). *6 The alarm will turn ON if the process value is larger than the alarm value (X) regardless of the set point. alarm value (X) regardless of the set point. it with standby sequence A standby sequence is added to the absolute-value upper- limit alarm (8). *6 with standby sequence A standby sequence is added to the absolute-value lower- limit alarm (9). *6 LBA (alarm 1 type only) -* 7 This alarm type turns ON the alarm when the set point (SP) is higher than the alarm value (X). This alarm type turns ON the alarm when the set point (SP) is lower than the alarm value (X). upper-limit alarm *9 Standard Control Standard Control This alarm type turns ON the alarm when the manipulated variable (MV) is higher than the alarm value (X).Heating/Cooling Control (Heating MV) Heating/Cooling Control (Heating MV) Always ON lower-limit alarm *9 Standard Control Standard Control This alarm type turns ON the alarm when the manipulated variable (MV) is lower than the alarm value (X).Heating/Cooling Control (Cooling MV) Heating/Cooling Control (Cooling MV) Always ON
18 RSP absolute-value
upper-limit alarm *10 This alarm type turns ON the alarm when the remote SP (RSP) is higher than the alarm value (X).
19 RSP absolute-value
lower-limit alarm *10 This alarm type turns ON the alarm when the remote SP (RSP) is lower than the alarm value (X). ON OFF PV SP LH SP XON OFF PV SP XON OFF PV SP XON OFF PV SP XON OFF PV SP LHON OFF PV SP LHON OFF PV SP XON OFF PV SP XON OFF PVSP XON OFF PV SP XON OFF PV0 XON OFF PV XON OFF PV0 XON OFF PV XON OFF PV0 XON OFF PV XON OFF PV0 XON OFF PV XON OFF PV XON OFF SP XON OFF SP0 XON OFF SP XON OFF SP XON OFF MV XON OFF MV XON OFF MV XON OFF MV XON OFF MV XON OFF MV XON OFF RSP XON OFF RSP0 XON OFF RSP XON OFF RSP
*1 With set values 1, 4 and 5, the upper and lower limit values can be set independently for each alarm type, and are expressed as “L” and “H.” *2 Set value: 1, Upper- and lower-limit alarm *3 Set value: 4, Upper- and lower-limit range *4 Set value: 5, Upper- and lower-limit with standby sequence For Upper- and Lower-Limit Alarm Described Above *2 Case 1 and 2 Always OFF when the upper-limit and lower-limit hysteresis overlaps. Case 3: Always OFF *5. Set value: 5, Upper- and lower-limit with standby sequence Always OFF when the upper-limit and lower-limit hysteresis overlaps. *6 Refer to the E5@C Digital Temperature Controllers User's Manual (Cat. No. H174) for information on the operation of the standby sequence. *7 Refer to the E5@C Digital Temperature Controllers User's Manual (Cat. No.H174) for information on the loop burnout alarm (LBA). *8 Refer to the E5@C Digital Temperature Controllers User's Manual (Cat. No. H174) for information on the PV change rate alarm. *9 When heating/cooling control is performed, the MV absolute upper limit alarm functions only for the heating operation and the MV absolute lower limit alarm functions only for the cooling operation. *10 This value is displayed only when a remote SP input is used. It functions in both Local SP Mode and Remote SP Mode. Remote SP input is supported only for the E5CC. LH H<0, L>0 SP Case 1 LH H>0, L<0 SP Case 2 LH H<0, L<0 SP L H H<0, L>0 L H H>0, L<0 Case 3 (Always ON) LH H<0, L>0 SP Case 1 LH H>0, L<0 SP Case 2 L H H<0, L<0 SP L L H H<0, L>0 H H>0, L<0 Case 3 (Always OFF)
*1 The indication accuracy of K thermocouples in the -200 to 1,300°C range, T and N thermocouples at a temperature of -100°C max., and U and L thermocouples at any temperatures is ±2°C ±1 digit max. The indication accuracy of the B thermocouple at a temperature of 400°C max. is not specified. The indication accuracy of B thermocouples at a temperature of 400 to 800°C is ±3°C max. The indication accuracy of the R and S thermocouples at a temperature of 200°C max. is ±3°C ±1 digit max. The indication accuracy of W thermocouples is (±0.3% of PV or ±3°C, whichever is greater) ±1 digit max. The indication accuracy of PL II thermocouples is (±0.3% of PV or ±2°C, whichever is greater) ±1 digit max. *2 Ambient temperature: -10°C to 23°C to 55°C, Voltage range: -15% to 10% of rated voltage *3 K thermocouple at -100°C max.: ±10°C max. *4 The unit is determined by the setting of the Integral/Derivative Time Unit parameter. *5 External communications (RS-485) and U SB-serial conversion cable communications can be used at the same time. *6 The E5CC-U plug-in model is certified fo r UL listing only when used together with the OMRON P2CF-11 or P2CF-11-E Socket. The P3GA-11 is not certified for UL listing. *8 Refer to information on maritime standards in Shipping Standards on page 106 for compliance with Lloyd's Standards. Indication accuracy (at the ambient temperature of 23°C) E5CC Thermocouple: ( ±0.3% of indication value or ±1°C, whichever is greater) ±1 digit max. *1 Platinum resistance thermometer: (±0.2% of indication value or ±0.8°C, whichever is greater) ±1 digit max. Analog input: ±0.2% FS ±1 digit max. CT input: ±5% FS ±1 digit max. E5CC-U Thermocouple: ( ±1% of indication value or ±2°C, whichever is greater) ±1 digit max. *1 Platinum resistance thermometer: (±0.2% of indication value or ±0.8°C, whichever is greater) ±1 digit max. Analog input: ±0.2% FS ±1 digit max. Transfer output accuracy ±0.3% FS max. Remote SP Input Type ±0.2% FS ±1 digit max. Influence of temperature *2 Thermocouple input (R, S, B, W, PL II): (±1% of indication value or ±10°C, whichever is greater) ±1 digit max. Other thermocouple input: (±1% of indication value or ±4°C, whichever is greater) ±1 digit max. *3 Platinum resistance thermometer: (±1% of indication value or ±2°C, whichever is greater) ±1 digit max. Analog input: ±1%FS ±1 digit max. CT input: ±5% FS ±1 digit max. Remote SP input: ±1% FS ±1 digit max. Influence of voltage *2 Input sampling period 50 ms Hysteresis Temperature input: 0.1 to 999.9°C or °F (in units of 0.1°C or °F) Analog input: 0.01% to 99.99% FS (in units of 0.01% FS) Proportional band (P) Temperature input: 0.1 to 999.9°C or °F (in units of 0.1°C or °F) Analog input: 0.1% to 999.9% FS (in units of 0.1% FS) Integral time (I) 0 to 9999 s (in units of 1 s), 0.0 to 999.9 s (in units of 0.1 s) *4 Derivative time (D) 0 to 9999 s (in units of 1 s), 0.0 to 999.9 s (in units of 0.1 s) *4 Proportional band (P) for cooling Temperature input: 0.1 to 999.9°C or °F (in units of 0.1°C or °F) Analog input: 0.1% to 999.9% FS (in units of 0.1% FS) Integral time (I) for cooling 0 to 9999 s (in units of 1 s), 0.0 to 999.9 s (in units of 0.1 s) *4 Derivative time (D) for cooling 0 to 9999 s (in units of 1 s), 0.0 to 999.9 s (in units of 0.1 s) *4 Control period 0.1, 0.2, 0.5, 1 to 99 s (in units of 1 s) Manual reset value 0.0 to 100.0% (in units of 0.1%) Alarm setting range -1999 to 9999 (decimal point position depends on input type) Influence of signal source resistance Thermocouple: 0.1°C/Ω max. (100 Ωmax.) Platinum resistance thermometer: 0.1°C/Ω max. (10 Ω max.) Insulation resistance 20 MΩ min. (at 500 VDC) Dielectric strength 3,000 VAC, 50/60 Hz for 1 min between terminals of different charge Vibration Malfunction 10 to 55 Hz, 20 m/s2 for 10 min each in X, Y, and Z directions Resistance 10 to 55 Hz, 20 m/s2 for 2 hrs each in X, Y, and Z directions Shock Malfunction 100 m/s2, 3 times each in X, Y, and Z directions Resistance 300 m/s2, 3 times each in X, Y, and Z directions Weight E5CC: Controller: Approx. 120 g, Adapter: Approx. 10 g E5CC-U: Controller: Approx. 100 g, Adapter: Approx. 10 g Degree of protection E5CC: Front panel: IP66, Rear case: IP20, Terminals: IP00 E5CC-U: Front panel: IP50, Rear case: IP20, Terminals: IP00 Memory protection Non-volatile memory (number of writes: 1,000,000 times) Setup Tool E5CC: CX-Thermo version 4.5 or higher E5CC-U: CX-Thermo version 4.61 or higher Setup Tool port E5CC/E5CC-U top panel: An E58-CIFQ2 USB-Serial Conversion Cable is used to connect to a USB port on the computer. *5 Standards Approved standards UL 61010-1*6, KOSHA certified (some models) *7, Korean Radio Waves Act (Act 10564) Conformed standards EN 61010-1 (IEC 61010-1): Pollution Degree 2, overvoltage category II, Lloyd's standards *8 EMC EMI: EN61326 Radiated Interference Electromagnetic Field Strength: EN 55011 Group 1, class A Noise Terminal Voltage: EN 55011 Group 1, class A EMS: EN 61326 ESD Immunity: EN 61000-4-2 Electromagnetic Field Immunity: EN 61000-4-3 Burst Noise Immunity: EN 61000-4-4 Conducted Disturbance Immunity: EN 61000-4-6 Surge Immunity: EN 61000-4-5 Voltage Dip/Interrupting Immunity: EN 61000-4-11
USB-Serial Conversion Cable Windows is a registered trademark of Microsoft Corporation in the United States and or other countries. * Use a high-power port for the USB port. Note: A driver must be installed on the computer. Refer to the Instruction Manual included with the Cable for the installation procedure. Communications Specifications * The baud rate, data bit length, stop bit length, and vertical parity can be individually set using the Communications Setting Level. Communications Functions MELSEC is a registered trademark of Mitsubishi Electric Corporation. KEYENCE is a registered trademark of Keyence Corporation. *1 A Temperature Controller with ve rsion 1.1 or higher is required. A Temperature Controller with version 2.1 or higher is required for the FX Series or the KV Series. *2 Both the programless communications and the component communications support the copying. Current Transformer (Order Separately) Ratings Heater Burnout Alarms and SSR Failure Alarms *1 For heater burnout alarms, the heater current will be measured when the control output is ON, and the output will turn ON if the heater current is lower than the set value (i.e., heater burnout detection current value). *2 For SSR failure alarms, the heater current will be measured when the control output is OFF, and the output will turn ON if the heater current is higher than the set value (i.e., SSR failure detection current value). *3 The value is 30 ms for a control period of 0.1 s or 0.2 s. *4 The value is 35 ms for a control period of 0.1 s or 0.2 s. Electrical Life Expectancy Curve for Relays (Reference Values) Applicable OS Windows XP, Vista, or 7 Applicable software CX-Thermo version 4.5 or higher (Version 4.61 or higher is required for the E5CC-U.) Applicable models E5@C-T Series, E5@C Series, and E5CB Series USB interface standard Conforms to USB Specification 2.0. DTE speed 38400 bps Connector specifications Computer: USB (type A plug) Digital Temperature Controller: Special serial connector Power supply Bus power (Supplied from USB host controller.)* Power supply voltage 5 VDC Current consumption 450 mA max. Output voltage 4.7±0.2 VDC (Supplied from USB-Serial Conversion Cable to the Digital Temperature Controller.) Output current 250 mA max. (Supplied from USB-Serial Conversion Cable to the Digital Temperature Controller.) Ambient operating temperature 0 to 55°C (with no condensation or icing) Ambient operating humidity 10% to 80% Storage temperature -20 to 60°C (with no condensation or icing) Storage humidity 10% to 80% Altitude 2,000 m max. Weight Approx. 120 g Transmission line connection method RS-485: Multidrop Communications RS-485 (two-wire, half duplex) Synchronization method Start-stop synchronization Protocol CompoWay/F, or Modbus Baud rate* 9600, 19200, 38400, or 57600 bps Transmission code ASCII Data bit length* 7 or 8 bits Stop bit length* 1 or 2 bits Error detection Vertical parity (none, even, odd) Block check character (BCC) with CompoWay/F or CRC-16 Modbus Flow control None Interface RS-485 Retry function None Communications buffer 217 bytes Communications response wait time 0 to 99 ms Default: 20 ms Programless communications*1 You can use the memory in the PLC to read and write E5@C parameters, start and stop operation, etc. The E5@C automatically performs communi- cations with PLCs. No communications program- ming is required. Number of connected Digital Temperature Con- trollers: 32 max. (Up to 16 for the FX Series) Applicable PLCs OMRON PLCs CS Series, CJ Series, or CP Series Mitsubishi Electric PLCs MELSEC Q Series, L Series, or FX Series (compatible with the FX2 or FX3 (excluding the FX1S)) KEYENCE PLCs KEYENCE KV Series Component Communications*1 When Digital Temperature Controllers are con- nected, set points and RUN/STOP commands can be sent from the Digital Temperature Control- ler that is set as the master to the Digital Temper- ature Controllers that are set as slaves. Slope and offsets can be set for the set point. Number of connected Digital Temperature Con- trollers: 32 max. (including master) Copying*2 When Digital Temperature Controllers are con- nected, the parameters can be copied from the Digital Temperature Controller that is set as the master to the Digital Temperature Controllers that are set as slaves. Dielectric strength 1,000 VAC for 1 min Vibration resistance 50 Hz, 98 m/s2 Weight E54-CT1: Approx. 11.5 g, E54-CT3: Approx. 50 g Accessories (E54-CT3 only) Armatures (2) Plugs (2) CT input (for heater current detection) Models with detection for single-phase heaters: One input Models with detection for singlephase or three-phase heaters: Two inputs Maximum heater current 50 A AC Input current indication accuracy ±5% FS ±1 digit max. Heater burnout alarm setting range 0.1 to 49.9 A (in units of 0.1 A) Minimum detection ON time: 100 ms *3 SSR failure alarm setting range *2 0.1 to 49.9 A (in units of 0.1 A) Minimum detection OFF time: 100 ms *4 500 300 100 0 12345 6 Switching current (A) E5CC (resistive load) cosφ = 1 Life (× 104 operations)
Note: 1. The application of the terminals depends on the model. 2. Do not wire the terminals that are shown with a gray background. 3. When complying with EMC standards, the cable that connects the sensor must be 30 m or less. If the cable length exceeds 30 m, compliance with EMC standards will not be possible. 4. Connect M3 crimped terminals. Connect M3.5 crimped terminals for the E5CC-U. Voltage output (for driving SSR) The E5CC is set for a K-type thermocouple (input type = 5) by default. An input error (s.err) will occur if the input type setting does not agree with the temperature sensor. Check the input type. Control output 1 Relay output
250 VAC, 3A
(resistive load) Voltage output (for driving SSR) Load: 500 Ω max. Relay outputs Models with 3 auxiliary outputs: 250 VAC, 2 A (resistive load) (no polarity) 100 to 240 VAC 24 VAC/DC Auxiliary outputs 1, 2, 3 Auxiliary output 2 Auxiliary output 3 Auxiliary output 1 005 Event Inputs 1 to 4 004 Communications (RS-485), and Event Inputs 3 and 4 007 Event Inputs 1 and 2, and Remote SP Input 006 Event Inputs 1 and 2, and Transfer Output 001 Event Inputs 1 and 2, and CT1 003 Communications (RS-485), CT1, and CT2 (2) Auxiliary Outputs (3) Input Power Supply(5) Sensor (Temperature/Analog) Input (6) Options Models with
1 Linear
1 Relay
(for Driving SSR) (1) Control outputs 1, 2 Models with 1 Voltage Output (for Driving SSR) RX QX CX QQ Auxiliary outputs 1, 2, 3 Terminal type Models with 2 Outputs: Linear Current Output and Voltage (for Driving SSR) CQ 18 12 Pt A B B m V - 5 V 6+ TC I + + V I V mA EV1 EV2 EV1 EV2 EV1 EV2 EV1 EV2 EV3 EV4 EV3 EV4 CT1 B(+) A(-) RS-485 B(+) A(-) RS-485 CT2 COM CT1 2 - 3 + Q 1 + 2 - COUT1 C OUT1 OUT1 OUT2 Q OUT1 R 3 + Q 1 + 2 - Q OUT1 OUT2 - - A B
250 VAC, 3 A (resistive load)
The E5CC-U is set for a K-type thermocouple (input type = 5) by default. An input error (s.err) will occur if the input type setting does not agree with the temperature sensor. Check the input type. Sensor (temperature/analog) input Auxiliary output 2: Control output (cooling side) Control output 1: Control output 1 100 to 240 VAC
24 VAC/DC (no polarity)
(for Driving SSR) Models with 1 Linear Current Output Output 1 Q Output 1 C Output 1 R E5CC-/box2/box2/box2/box2UM-000 Control output 1 Auxiliary outputs 1, 2 Voltage output (for driving SSR) Load: 500 Ω max. Relay output (three terminals used) SPDT, 250 VAC, 3 A (resistive load) Input power supply I V TC Pt
Isolation/Insulation Block Diagrams
- E5CC Models with 3 Auxiliary Outputs
- E5CC-U Models with 2 Auxiliary Outputs Nomenclature Sensor input, CT inputs, and remote SP input Communications and event inputs Voltage output (for driving SSR), linear current output, and transfer output Relay output Auxiliary outputs 1, 2, 3 : Reinforced insulation : Functional isolation Power supply Note: Auxiliary outputs 1 to 3 are not insulated. Sensor input Voltage output (for driving SSR) and linear current output Relay output Auxiliary outputs 1 and 2 : Reinforced insulation : Functional isolation Power supply E5CC E5CC-U Press O Key once to go to Adjustment Level. Press O Key for at least 3 seconds to go to Initial Setting Level. Use the M Key to change to another parameter. Operation indicators No. 1 display No. 2 display Temperature unit Use S Key to change the digit (default setting). Use the U D Keys to set the parameter. Front panel PV or specified parameter SP or specified parameter value Top View of E5CC Top View of E5CC-U Top-panel Setup Tool port
Dimensions (Unit: mm) Controllers 45+0.6 45+0.6 45+0.6 60 min. (48 × number of units - 2.5)+1.0 Panel Cutout Mounted Separately Group Mounted 48 × 48 Mounting Adapter (Accessory) Terminal Cover (E53-COV17) (Sold separately) Waterproof Packing (Accessory) 44.8 × 44.8 73.1 58 48.8 48 × 48 E5CC Recommended panel thickness is 1 to 5 mm. Group mounting is not possible in the vertical direction. (Maintain the specified mounting space between Controllers.) To mount the Controller so that it is waterproof, insert the waterproof packing onto the Controller. When two or more Controllers are mounted, make sure that the surrounding temperature does not exceed the allowable operating temperature specified in the specifications. Use a control panel thickness of 1 to 3 mm if the Y92A-48N and a USB-Serial Conversion Cable are used together. The Setup Tool port is on the top of the Temperature Controller. It is used to connect the Temperature Controller to the computer to use the Setup Tool. The E58-CIFQ2 USB-Serial Conversion Cable is required to make the connection. Refer to the instructions that are provided with the USB-Serial Conversion Cable for the connection procedure. Note: Do not leave the USB-Serial Conversion Cable connected when you use the Temperature Controller. 76.8 58.64 14.2 48 × 48 48 × 48 Mounting Adapter (Accessory) 45+0.6 45+0.6 45+0.6 60 min. (48 × number of units - 2.5)+1.0 Panel Cutout Mounted Separately Group Mounted E5CC-U Recommended panel thickness is 1 to 5 mm. Group mounting is not possible in the vertical direction. (Maintain the specified mounting space between Controllers.) When two or more Controllers are mounted, make sure that the surrounding temperature does not exceed the allowable operating temperature specified in the specifications. Use a control panel thickness of 1 to 3 mm if the Y92A-48N and a USB-Serial Conversion Cable are used together. The Setup Tool port is on the top of the Temperature Controller. It is used to connect the Temperature Controller to the computer to use the Setup Tool. The E58-CIFQ2 USB-Serial Conversion Cable is required to make the connection. Refer to the instructions that are provided with the USB-Serial Conversion Cable for the connection procedure. Note: Do not leave the USB-Serial Conversion Cable connected when you use the Temperature Controller.
Accessories (Order Separately) (2110) USB connector (type A plug) Serial connector LED (SD) LED (PWR) LED (RD) 250 1510263
- USB-Serial Conversion Cable E58-CIFQ2 48.8 9.1 44.8 2 3.8 Terminal Cover (E53-COV23)
- Terminal Covers E53-COV17
- Terminal Covers E53-COV23 (Three Covers provided.) Y92A-48G UP P C Twelve, 6.4-dia. 47.7×47.7 48×48 27.624.616.5 47.4
- Terminal Cover (for the P3GA-11 Back-connecting Socket) Y92A-48G Note: You can attach the P3GA-11 Back-connecting Socket for finger protection.
- Waterproof Packing Y92S-P8 (for DIN 48 × 48) The Waterproof Packing is provided only with the E5CC. Order the Waterproof Packing separately if it becomes lost or damaged. The Waterproof Packing can be used to achieve an IP66 degree of protection. (Deterioration, shrinking, or hardening of the waterproof packing may occur depending on the operating environment. Therefore, periodic replacement is recommended to ensure the level of waterproofing specified in IP66. The time for periodic replacement depends on the operating environment. Be sure to confirm this point at your site. Consider three years as a rough standard.) The Waterproof Packing does not need to be attached if a waterproof structure is not required. The E5CC-U cannot be waterproofed even if the Waterproof Packing is attached.
- Current Transformers E54-CT3 Accessories A r m a t u r e 15 5.8 dia. 25 3 10.5 2.8 7.5 Two, 3.5 dia. 40 × 40 12 dia. 2.36 dia. Two, M3 (depth: 4) Approx. 3 dia. (22) Approx. 6 dia. Plug Armature Lead E54-CT1 E54-CT3 Connection Example P l u g Thru-current (Io) vs. Output Voltage (Eo) (Reference Values) E54-CT1 Maximum continuous heater current: 50 A (50/60 Hz) Number of windings: 400 ±2 Winding resistance: 18 ±2 Ω Thru-current (Io) A (r.m.s.) 1 10 100mA 1 10 100 1,000A 100V Frequency: 50 Hz Distortion factor 10% 100Ω RL=10Ω ∞10 100mV 100μV 1kΩ Output voltage (Eo) V (r.m.s.) Thru-current (Io) vs. Output Voltage (Eo) (Reference Values) E54-CT3 Maximum continuous heater current: 120 A (50/60 Hz) (Maximum continuous heater current for an OMRON Digital Temperature Controller is 50 A.) Number of windings: 400 ±2 Winding resistance: 8 ±0.8 Ω Thru-current (Io) A (r.m.s.) 1 10 100mA 1 10 100 1,000A 100V Frequency: 50 Hz Distortion factor 10% 1kΩ 100Ω 50Ω RL=10Ω 500Ω ∞10 100mV 100μV Output voltage (Eo) V (r.m.s.)
- Adapter
- DIN Track Mounting Adapter Fixture (Accessory) 69.6 to 77.6 87 67 × 67 72 × 72 764.7 72 × 72 48 × 48 Panel (1 to 8 mm) Mounting Adapter Y92F-30 (Accessory) 62.8 To back of the E5CC 2.2 4.7 Y92F-45 Mounted to E5CC Note: 1. Use this Adapter when the Front Panel has already been prepared for the E5B@. 2. Only black is available. 3. You cannot use the E58-CIFQ2 USB-Serial Conversion Cable if you use the Y92F-45 Adapter. To use the USB-Serial Conversion Cable to make the settings, do so before you mount the Temperature Controller in the panel. 3.5 80.5 Mounted to E5CC Note: This Adapter cannot be used together with the Terminal Cover. Remove the Terminal Cover to use the Adapter. Y92F-52 This Adapter is used to mount the E5CC to a DIN Track. If you use the Adapter, there is no need for a plate to mount in the panel or to drill mounting holes in the panel.
- E5CC-U Wiring Socket Front-connecting Socket P2CF-11 Back-connecting Socket P3GA-11
- Watertight Cover Y92A-48N
- Mounting Adapter Y92F-49
- Protective Cover ● Protective Cover Y92A-48H 67.6 21.9 14 (2) 79.287.7 The Mounting Adapter is provided with the Temperature Controller. Order this Adapter separately if it becomes lost or damaged. This Protective Cover is soft type. It is able to operate the controller with using this cover. Y92A-48D Note: This Protective Cover cannot be used if the Waterproof Packing is installed. This Protective Cover is hard type. Please use it for the mis-operation prevention etc. 40±0.2 4.5 5678 10 11 70 max. Eleven, M3.5 × 7.5 sems screws 7.8 Two, 4.5-dia. holes 50 max. 31.2 max. 35.4 Mounting Holes Terminal Layout/Internal Connections (Top View) Two, 4.5 dia. mounting holes Note: 1. A model with finger protection (P2CF-11-E) is also available. 2. You cannot use the P2CF-11 or P2CF-11-E together with the Y92F-45. Note: Can also be mounted to a DIN track 5 6 7 8 10111 25.6 27dia. 4.5 16.3 6.2 47 3 8.7 Terminal Layout/Internal Connections (Bottom View) Eleven, M3.5 sems screws Note: 1. Using any other sockets will adversely affect accuracy. Use only the specified sockets. 2. A Protective Cover for finger protection (Y92A-48G) is also available. 3. You cannot use the P3GA-11 together with the Y92F-45.
Digital Temperature Controller E5EC/E5AC (48 × 96 mm/96 × 96 mm) Large White PV Display That’s Easier to Read. Easy to Use, from Model Selection to Setup and Operation. A Complete Range of I/O Capacities, Functions, and Performance. Handles More Applications. A white LCD PV display with a height of approx. 18 mm for the E5EC and 25 mm for the E5AC improves visibility. Tool ports are provided both on the top panel and the front panel. Set up the Controller without wiring the power supply by connecting to the computer with a Communications Conversion Cable (sold separately). Setup is easy with the CX-Thermo (sold separately). High-speed sampling at 50 ms. Models are available with up to 4 auxiliary outputs, up to 6 event inputs, a transfer output, and a remote SP input to cover a wide range of applications. Short body with depth of only 60 mm. Easy connections to a PLC with programless communications. Use component communications to link Temperature Controllers to each other. The new position-proportional control models allow you to control valves as well. Main I/O Functions 48 × 96 mm E5EC 96 × 96 mm E5AC Refer to your OMRON website for the most recent information on applicable safety standards. E5EC 4-digit displays Sensor Input Indication Accuracy
- Thermocouple input: ±0.3% of PV
- Pt input: ±0.2% of PV
- Analog input: ±0.2% of FS Sampling Period
- 50 ms Event Inputs
- None
- 2
- 4
- 6 Remote SP Input
- None
- 1 Control Output 1
- Relay output
- Voltage output (for driving SSR)
- Linear current output Control Output 2
- Voltage output (for driving SSR)
- Relay output
- Linear current output Auxiliary Outputs
- 4 Transfer Output
- None
- 1
- PF (shift) Key
- Setup Tool port on front panel
- Temperature status display
- Simple programming
- Independent heating and cooling PID control
- Changed parameter display
- Display brightness setting Three-level Display PV, SV, and MV displayed at the same time. E5AC Serial Communications
- None
- RS-485 Universal input
- Thermocouple
- Pt
- Analog current/voltage This datasheet is provided as a guideline for selecting products. Be sure to refer to the following manuals for application precautions and other information required for operation before attempting to use the product. E5@C Digital Temperature Controllers User’s Manual (Cat. No. H174) E5@C Digital Temperature Controllers Communications Manual (Cat. No. H175) Refer to Safety Precautions on page 104.
Model Number Legend and Standard Models Model Number Legend
- Models with Screw Terminals *1. The options that can be selected depend on the type of control output. *2. The control output cannot be used as a transfer output. *3. A model with four auxiliary outputs must be selected. Heating and Cooling Control l Using Heating and Cooling Control A Control Output Assignment If there is no control output 2, an auxiliary output is used as the cooling control output. If there is a control output 2, the two control outputs are used for heating and cooling. (It does not matter which output is used for heating and which output is used for cooling.) B Control If PID control is used, you can set PID control separately for heating and cooling. This allows you to handle control systems with different heating and cooling response characteristics. Model A B C D E F MeaningControl outputs 1 and 2 No. of auxil- iary out- puts Power supply voltage Terminal type Input type Options E5EC 48 × 96 mm E5AC 96 × 96 mm Control output 1 Control output 2 RX Relay output None QX Voltage output (for driving SSR) None *2 CX Linear current output None QQ Voltage output (for driving SSR) Voltage output (for driving SSR) QR Voltage output (for driving SSR) Relay output RR Relay output Relay output *2 CC Linear current output Linear current out- put *2 CQ Linear current output Voltage output (for driving SSR) PR Position-proportional relay output Position-proportion- al relay output *3 4 4 (auxiliary outputs 1 and 2 with same common and auxilia- ry outputs 3 and 4 with same common) A 100 to 240 VAC D 24 VAC/DC
Control outputs 1 and 2 M Universal input Option selection conditions For RX, QX, QQ, QR, RR, or CQ For CX or CC For PR HB alarm and HS alarm Communications Event inputs Remote SP Input Transfer output Selectable Selectable Selec table 000 --- --- --- --- --- Selectable Selectable 004 --- RS-485 2 --- --- Selectable 005 --- --- 4 --- --- Selectable 009 (for 3-phase heaters) RS-485 2 --- --- Selectable 010 1 --- 4 --- --- Selectable 011 1 --- 6 Provided. Provided. Selectable 013 --- --- 6 Provided. Provided. Selectable Selectable 014 --- RS-485 4 Provided. Provided.
Optional Products (Order Separately) USB-Serial Conversion Cable Communications Conversion Cable Note: Always use this product together with the E58-CIFQ2. This Cable is used to connect to the front-panel Setup Tool port. Terminal Covers Note: The Terminal Covers E53-COV24 are provided with the Digital Temperature Controller. Waterproof Packing Note: This Waterproof Packing is provided with the Digital Temperature Controller. Waterproof Cover Front Port Cover Note: This Front Port Cover is provided with the Digital Temperature Controller. Mounting Adapter Note: This Mounting Adapter is provided with the Digital Temperature Controller. Current Transformers (CTs) CX-Thermo Support Software Note: CX-Thermo version 4.5 or higher is required for the E5EC/ E5AC. For the system requirements for the CX-Thermo, refer to information on the EST2-2C-MV4 on the OMRON website (www.ia.omron.com). Model E58-CIFQ2 Model E58-CIFQ2-E Model E53-COV24 (3pcs) Applicable Controller Model E5EC Y92S-P9 E5AC Y92S-P10 Applicable Controller Model E5EC Y92A-49N E5AC Y92A-96N Model Y92S-P7 Model Y92F-51 (2pcs) Hole diameter Model 5.8 mm E54-CT1 12.0 mm E54-CT3 Model EST2-2C-MV4
Power supply voltage A in model number: 100 to 240 VAC, 50/60 Hz D in model number: 24 VAC, 50/60 Hz; 24 VDC Operating voltage range 85% to 110% of rated supply voltage Power consumption E5EC Models with option selection of 000:6.6 VA max. at 100 to 240 VAC, and 4.1 VA max. at 24 VAC or 2.3 W max. at 24 VDC E5AC Models with option selection of 000:7.0 VA max. at 100 to 240 VAC, and 4.2 VA max. at 24 VAC or 2.4 W max. at 24 VDC Sensor input Temperature input Thermocouple: K, J, T, E, L, U, N, R, S, B, W, or PL II Platinum resistance thermometer: Pt100 or JPt100 Infrared temperature sensor (ES1B): 10 to 70°C, 60 to 120°C, 115 to 165°C, or 140 to 260°C Analog input Current input: 4 to 20 mA or 0 to 20 mA Voltage input: 1 to 5 V, 0 to 5 V, or 0 to 10 V Input impedance Current input: 150 Ω max., Voltage input: 1 MΩ min. (Use a 1:1 connection when connecting the ES2-HB/THB.) Control method ON/OFF or 2-PID control (with auto-tuning) Control output Relay output SPST-NO, 250 VAC, 5 A (resistive load), electrical life: 100,000 operations, minimum applicable load: 5 V, 10 mA (reference value) Voltage output (for driving SSR) Output voltage: 12 VDC ±20% (PNP), max. load current: 40 mA, with short-circuit protection circuit (The maximum load current is 21 mA for models with two control outputs.) Linear current output 4 to 20 mA DC/0 to 20 mA DC, load: 500 Ω max., resolution: approx. 10,000 Auxiliary output Number of outputs 4 Output specifications SPST-NO. relay outputs, 250 VAC, Models with 4 outputs: 2 A (resistive load), Electrical life: 100,000 operations, Minimum applicable load: 10 mA at 5 V (reference value) Event input Number of inputs 2, 4 or 6 (depends on model) External contact input specifications Contact input: ON: 1 kΩ max., OFF: 100 kΩ min. Non-contact input: ON: Residual voltage: 1.5 V max., OFF: Leakage current: 0.1 mA max. Current flow: Approx. 7 mA per contact Transfer output Number of outputs 1 (only on models with a transfer output) Output specifications Current output: 4 to 20 mA DC, Load: 500 Ω max., Resolution: Approx. 10,000 Linear voltage output: 1 to 5 VDC, load: 1 kΩ min., Resolution: Approx. 10,000 Remote SP input Current input: 4 to 20 mA DC or 0 to 20 mA DC (input impedance: 150 Ω max.) Voltage input: 1 to 5 V, 0 to 5 V, or 0 to 10 V (input impedance: 1 MΩ min.) Potentiometer input 100 Ω to 10 kΩ Setting method Digital setting using front panel keys Indication method 11-segment digital display and individual indicators Character height: E5EC: PV: 18.0 mm, SV: 11.0 mm, MV: 7.8 mm E5AC: PV: 25.0 mm, SV: 15.0 mm, MV: 9.5 mm Three displays Contents: PV/SV/MV, PV/SV/Multi-SP, or PV/SV/Remaining soak time Numbers of digits: 4 digits each for PM, SV, and MV displays Multi SP Up to eight set points (SP0 to SP7) can be saved and selected using the event inputs, key operations, or serial communications. Bank switching None Other functions Manual output, heating/cooling control, loop burnout alarm, SP ramp, other alarm functions, heater burnout (HB) alarm (including SSR failure (HS) alarm), 40% AT, 100% AT, MV limiter, input digital filter, self tuning, robust tuning, PV input shift, run/stop, protection functions, extraction of square root, MV change rate limit, logic operations, temperature status display, simple programming, moving av- erage of input value, and display brightness setting Ambient operating temperature −10 to 55°C (with no condensation or icing), For 3-year warranty: −10 to 50°C with standard mounting (with no condensation or icing) Ambient operating humidity 25% to 85% Storage temperature -25 to 65°C (with no condensation or icing) Altitude 2,000 m max. Recommended fuse T2A, 250 VAC, time-lag, low-breaking capacity Installation environment Installation Category II, Pollution Degree 2 (IEC 61010-1 compliant)
- Thermocouple/Platinum Resistance Thermometer (Universal inputs) Shaded settings are the default settings. The applicable standards for the input types are as follows: K, J, T, E, N, R, S, B: JIS C 1602-1995, IEC 60584-1 JPt100: JIS C 1604-1989, JIS C 1606-1989 L: Fe-CuNi, DIN 43710-1985 Pt100: JIS C 1604-1997, IEC 60751 U: Cu-CuNi, DIN 43710-1985 PL II: According to Platinel II el ectromotive force charts from BASF (previously Engelhard) W: W5Re/W26Re, ASTM E988-1990
- Analog input Sensor type Platinum resistance thermometer Thermocouple Infrared temperature sensor Sensor specifica- tion Pt100 JPt100 K J T E L U N R S B W PLII 10 to 70°C 60 to 120°C 115 to 165°C 140 to 260°C 2300 1800 1700 1600 1500 1400 1300 1200 1100 1000 900 800 700 600 500 400 300 200 100 -100 -200 2300 1800 1700 1700 1300 1300 1300 850 850 850 600 500.0 500.0 500.0 400.0 400 400.0 400 400.0 260 120 165 100.0 100.0 90 100 0.0 0.0 00 000000 -200 -199.9 -199.9 -200 -200 -199.9 -200 -200 -199.9 -200 Set value 01234 56789 1 0 1 1 1 2 1 3 1 4 1 5 1 6 1 7 1 8 1 9 2 0 2 1 2 2 2 3 2 4 Input type Current Voltage Input specification 4 to 20 mA 0 to 20 mA 1 to 5 V 0 to 5 V 0 to 10 V Setting range Usable in the following ranges by scaling: -1999 to 9999, -199.9 to 999.9, -19.99 to 99.99 or -1.999 to 9.999 Set value 25 26 27 28 29 Temperature range (°C)
Each alarm can be independently set to one of the following 19 alarm types. The default is 2: Upper limit. (see note.) Auxiliary outputs are allocated for alarms. ON delays and OFF delays (0 to 999 s) can also be specified. Note: In the default settings for models with HB or HS alarms, alarm 1 is set to a heater alarm (HA) and the Alarm Type 1 parameter is not displayed. To use alarm 1, set the output assignment to alarm 1. Set value Alarm type Alarm output operation Description of functionWhen alarm value X is positive When alarm value X is negative Set the upward deviation in the set point for the alarm upper limit (H) and the lower deviation in the set point for the alarm lower limit (L). The alarm is ON when the PV is outside this deviation range. (default) Upper-limit Set the upward deviation in the set point by setting the alarm value (X). The alarm is ON when the PV is higher than the SP by the deviation or more. Set the downward deviation in the set point by setting the alarm value (X). The alarm is ON when the PV is lower than the SP by the deviation or more. range *1 Set the upward deviation in the set point for the alarm upper limit (H) and the lower deviation in the set point for the alarm lower limit (L). The alarm is ON when the PV is inside this de- viation range. with standby sequence *1 *4 A standby sequence is added to the upper- and lower-limit alarm (1). *6 sequence A standby sequence is added to the upper-limit alarm (2). *6 sequence A standby sequence is added to the lower-limit alarm (3). *6 The alarm will turn ON if the process value is larger than the alarm value (X) regardless of the set point. alarm value (X) regardless of the set point. it with standby sequence A standby sequence is added to the absolute-value upper- limit alarm (8). *6 with standby sequence A standby sequence is added to the absolute-value lower- limit alarm (9). *6 LBA (alarm 1 type only) -* 7 This alarm type turns ON the alarm when the set point (SP) is higher than the alarm value (X). This alarm type turns ON the alarm when the set point (SP) is lower than the alarm value (X). upper-limit alarm *9 Standard Control Standard Control This alarm type turns ON the alarm when the manipulated variable (MV) is higher than the alarm value (X).Heating/Cooling Control (Heating MV) Heating/Cooling Control (Heating MV) Always ON lower-limit alarm *9 Standard Control Standard Control This alarm type turns ON the alarm when the manipulated variable (MV) is lower than the alarm value (X).Heating/Cooling Control (Cooling MV) Heating/Cooling Control (Cooling MV) Always ON upper-limit alarm *10 This alarm type turns ON the alarm when the remote SP (RSP) is higher than the alarm value (X). lower-limit alarm *10 This alarm type turns ON the alarm when the remote SP (RSP) is lower than the alarm value (X). ON OFF PV SP LH SP XON OFF PV SP XON OFF PV SP XON OFF PV SP XON OFF PV SP LHON OFF PV SP LHON OFF PV SP XON OFF PV SP XON OFF PVSP XON OFF PV SP XON OFF PV0 XON OFF PV XON OFF PV0 XON OFF PV XON OFF PV0 XON OFF PV XON OFF PV0 XON OFF PV XON OFF PV XON OFF SP XON OFF SP0 XON OFF SP XON OFF SP XON OFF MV XON OFF MV XON OFF MV XON OFF MV XON OFF MV XON OFF MV XON OFF RSP XON OFF RSP0 XON OFF RSP XON OFF RSP
*1 With set values 1, 4 and 5, the upper and lower limit values can be set independently for each alarm type, and are expressed as “L” and “H.” *2. Set value: 1, Upper- and lower-limit alarm *3. Set value: 4, Upper- and lower-limit range *4. Set value: 5, Upper- and lower-limit with standby sequence For Upper- and Lower-Limit Alarm Described Above *2 Case 1 and 2 Always OFF when the upper-limit and lower-limit hysteresis overlaps. Case 3: Always OFF *5. Set value: 5, Upper- and lower-limit with standby sequence Always OFF when the upper-limit and lower-limit hysteresis overlaps. *6. Refer to the E5@C Digital Temperature Controllers User's Manual (Cat. No. H174) for information on the operation of the standby sequence. *7. Refer to the E5@C Digital Temperature Controllers User's Manual (Cat. No. H174) for information on the loop burnout alarm (LBA). This setting cannot be used with a position-proportional model. *8. Refer to the E5@C Digital Temperature Controllers User's Manual (Cat. No. H174) for information on the PV change rate alarm. *9. When heating/cooling control is performed, the MV absolute upper limit alarm functions only for the heating operation and the MV absolute lower limit alarm functions only for the cooling operation. *10. This value is displayed only when a remote SP input is used. It functions in both Local SP Mode and Remote SP Mode. LH S P Case 1 LHSP Case 2 LHS P LHS P L H SP Case 3 (Always ON) H<0, L<0 H<0, L>0 H>0, L<0 H<0, L>0 H>0, L<0 LH S P Case 1 LHSP Case 2 LHS P L L HS P H SP Case 3 (Always OFF) H<0, L>0 H>0, L<0 H<0, L<0 H<0, L>0 H>0, L<0
*1 The indication accuracy of K thermocouples in the -200 to 1,300°C range, T and N thermocouples at a temperature of -100°C max ., and U and L thermocouples at any temperatures is ±2°C ±1 digit max. The indication accuracy of the B thermocouple at a temperature of 400°C max. is not specified. The indication accuracy of B thermocouples at a temperature of 400 to 800°C is ±3°C max. The indication accuracy of the R and S thermocouples at a temperature of 200°C max. is ±3°C ±1 digit max. The indication accuracy of W thermocouples is (±0.3% of PV or ±3°C, whichever is greater) ±1 digit max. The indication accuracy of PL II thermocouples is (±0.3% of PV or ±2°C, whichever is greater) ±1 digit max. *2 Ambient temperature: -10°C to 23°C to 55°C, Voltage range: -15% to 10% of rated voltage *3 K thermocouple at -100°C max.: ±10°C max. *4 The unit is determined by the setting of th e Integral/Derivative Time Unit parameter. *5 External communications (RS-485) and USB-serial conver sion cable communications can be used at the same time. *6 Refer to information on maritime standards in Shipping Standards on page 106 for compliance with Lloyd's Standards. Indication accuracy (at the ambient temperature of 23°C) Thermocouple: (±0.3% of indication value or ±1°C, whichever is greater) ±1 digit max. *1 Platinum resistance thermometer: (±0.2% of indication value or ±0.8°C, whichever is greater) ±1 digit max. Analog input: ±0.2% FS ±1 digit max. CT input: ±5% FS ±1 digit max. Potentiometer input: ±5% FS ±1 digit max. Transfer output accuracy ±0.3% FS max. Remote SP Input Type ±0.2% FS ±1 digit max. Influence of temperature *2 Thermocouple input (R, S, B, W, PL II): (±1% of indication value or ±10°C, whichever is greater) ±1 digit max. Other thermocouple input: (±1% of indication value or ±4°C, whichever is greater) ±1 digit max. *3 Platinum resistance thermometer: (±1% of indication value or ±2°C, whichever is greater) ±1 digit max. Analog input: ±1%FS ±1 digit max. CT input: ±5% FS ±1 digit max. Remote SP input: ±1% FS ±1 digit max. Influence of voltage *2 Input sampling period 50ms Hysteresis Temperature input: 0.1 to 999.9°C or °F (in units of 0.1°C or°F) Analog input: 0.01% to 99.99% FS (in units of 0.01% FS) Proportional band (P) Temperature input: 0.1 to 999.9°C or °F (in units of 0.1°C or °F) Analog input: 0.1 to 999.9% FS (in units of 0.1% FS) Integral time (I) Standard, heating/cooling, or Position-proportional (Close): 0 to 9999 s (in units of 1 s), 0.0 to 999.9 s (in units of 0.1 s) Position-proportional (Floating): 1 to 9999 s (in units of 1 s), 0.1 to 999.9 s (in units of 0.1 s)*4 Derivative time (D) 0 to 9999 s (in units of 1 s), 0.0 to 999.9 s (in units of 0.1 s) *4 Proportional band (P) for cooling Temperature input: 0.1 to 999.9°C or °F (in units of 0.1°C or °F) Analog input: 0.1 to 999.9% FS (in units of 0.1% FS) Integral time (I) for cooling 0 to 9999 s (in units of 1 s), 0.0 to 999.9 s (in units of 0.1 s) *4 Derivative time (D) for cooling 0 to 9999 s (in units of 1 s), 0.0 to 999.9 s (in units of 0.1 s) *4 Control period 0.1, 0.2, 0.5, 1 to 99 s (in units of 1 s) Manual reset value 0.0 to 100.0% (in units of 0.1%) Alarm setting range -1999 to 9999 (decimal point position depends on input type) Influence of signal source resis- tance Thermocouple: 0.1°C/Ω max. (100 Ω max.) Platinum resistance thermometer: 0.1°C/Ω max. (10 Ω max.) Insulation resistance 20 MΩ min. (at 500 VDC) Dielectric strength 3,000 VAC, 50/60 Hz for 1 min between terminals of different charge Vibration Malfunction 10 to 55 Hz, 20 m/s2 for 10 min each in X, Y, and Z directions Resistance 10 to 55 Hz, 20 m/s2 for 2 hrs each in X, Y, and Z directions Shock Malfunction 100 m/s2, 3 times each in X, Y, and Z directions Resistance 300 m/s2, 3 times each in X, Y, and Z directions Weight E5EC Controller: Approx. 210 g, Adapter: Approx. 4 g × 2 E5AC Controller: Approx. 250 g, Adapter: Approx. 4 g × 2 Degree of protection Front panel: IP66, Rear case: IP20, Terminals: IP00 Memory protection Non-volatile memory (number of writes: 1,000,000 times) Setup Tool CX-Thermo version 4.5 or higher Setup Tool port E5EC/E5AC top panel: An E58-CIFQ2 USB-Serial Conversion Cable is used to connect to a USB port on the computer.*5 E5EC/E5AC front panel: An E58-CIFQ2 USB-Serial Conversion Cable and E58-CIFQ2-E Conversion Cable are used together to connect to a USB port on the computer.*5 Standards Approved standards UL 61010-1, Korean Radio Waves Act (Act 10564) Conformed standards EN 61010-1 (IEC 61010-1): Pollution Degree 2, overvoltage category II, Lloyd's standards *6 EMC EMI EN61326 Radiated Interference Electromagnetic Field Strength: EN 55011 Group 1, class A Noise Terminal Voltage: EN 55011 Group 1, class A EMS: EN 61326 ESD Immunity: EN 61000-4-2 Electromagnetic Field Immunity: EN 61000-4-3 Burst Noise Immunity: EN 61000-4-4 Conducted Disturbance Immunity: EN 61000-4-6 Surge Immunity: EN 61000-4-5 Voltage Dip/Interrupting Immunity: EN 61000-4-11
USB-Serial Conversion Cable Windows is a registered trademark of Microsoft Corporation in the United States and or other countries. * Use a high-power port for the USB port. Note: A driver must be installed on the computer. Refer to the Instruction Manual included with the Cable for the installation procedure. Communications Specifications * The baud rate, data bit length, stop bit length, and vertical parity can be in- dividually set using the Communications Setting Level. Communications Functions MELSEC is a registered trademark of Mitsubishi Electric Corporation. KEYENCE is a registered trademark of Keyence Corporation. *1 A Temperature Controller with version 1.1 or higher is required. A Temperature Controller with version 2.1 or higher is required for the FX Series or the KV Series. *2 Both the programless communications and the component communications support the copying. Current Transformer (Order Separately) Ratings Heater Burnout Alarms and SSR Failure Alarms *1. For heater burnout alarms, the heater current will be measured when the control output is ON, and the output will turn ON if the heater current is lower than the set value (i.e., heater burnout detection current value). *2. For SSR failure alarms, the heater current will be measured when the control output is OFF, and the output will turn ON if the heater current is higher than the set value (i.e., SSR failure detection current value). *3. The value is 30 ms for a control period of 0.1 s or 0.2 s. *4. The value is 35 ms for a control period of 0.1 s or 0.2 s. Electrical Life Expectancy Curve for Relays (Reference Values) Applicable OS Windows XP, Vista, or 7 Applicable software CX-Thermo version 4.5 or higher Applicable models E5@C-T Series, E5@C Series, and E5CB Series USB interface standard Conforms to USB Specification 2.0. DTE speed 38,400 bps Connector specifications Computer: USB (type A plug) Digital Temperature Controller: Special serial connector Power supply Bus power (Supplied from USB host controller.)* Power supply voltage 5 VDC Current consumption 450 mA max. Output voltage 4.7±0.2 VDC (Supplied from USB-Serial Conversion Cable to the Digital Temperature Controller.) Output current 250 mA max. (Supplied from USB-Serial Conversion Cable to the Digital Temperature Controller.) Ambient operating temperature 0 to 55°C (with no condensation or icing) Ambient operating humidity 10% to 80% Storage temperature -20 to 60°C (with no condensation or icing) Storage humidity 10% to 80% Altitude 2,000 m max. Weight Approx. 120 g Transmission line connection method RS-485: Multidrop Communications RS-485 (two-wire, half duplex) Synchronization method Start-stop synchronization Protocol CompoWay/F, or Modbus Baud rate* 9600, 19200, 38400, or 57600 bps Transmission code ASCII Data bit length* 7 or 8 bits Stop bit length* 1 or 2 bits Error detection Vertical parity (none, even, odd) Block check character (BCC) with CompoWay/F or CRC-16 Modbus Flow control None Interface RS-485 Retry function None Communications buffer 217 bytes Communications response wait time 0 to 99 ms Default: 20 ms Programless communications You can use the memory in the PLC to read and write E5@C parameters, start and stop operation, etc. The E5@C automatically performs communi- cations with PLCs. No communications program- ming is required. Number of connected Digital Temperature Con- trollers: 32 max. (Up to 16 for the FX Series) Applicable PLCs OMRON PLCs CS Series, CJ Series, or CP Series Mitsubishi Electric PLCs MELSEC Q Series, L Series, or FX Series (compatible with the FX2 or FX3 (excluding the FX1S)) KEYENCE PLCs KEYENCE KV Series Component Communications*1 When Digital Temperature Controllers are con- nected, set points and RUN/STOP commands can be sent from the Digital Temperature Control- ler that is set as the master to the Digital Temper- ature Controllers that are set as slaves. Slope and offsets can be set for the set point. Number of connected Digital Temperature Con- trollers: 32 max. (including master) Copying*2 When Digital Temperature Controllers are con- nected, the parameters can be copied from the Digital Temperature Controller that is set as the master to the Digital Temperature Controllers that are set as slaves. Dielectric strength 1,000 VAC for 1 min Vibration resistance 50 Hz, 98 m/s2 Weight E54-CT1: Approx. 11.5 g, E54-CT3: Approx. 50 g Accessories (E54-CT3 only) Armatures (2) Plugs (2) CT input (for heater current detection) Models with detection for singlephase heaters: One input Models with detection for singlephase or three-phase heaters: Two inputs Maximum heater current 50 A AC Input current indica- tion accuracy ±5% FS ±1 digit max. Heater burnout alarm setting range 0.1 to 49.9 A (in units of 0.1 A) Minimum detection ON time: 100 ms *3 SSR failure alarm setting range *2 0.1 to 49.9 A (in units of 0.1 A) Minimum detection OFF time: 100 ms *4500 300 100 01 2 3 4 56 Switching current (A) E5EC/E5AC (resistive load) cosφ = 1 Life (× 104 operations)
Isolation/Insulation Block Diagrams Models with 4 Auxiliary Outputs Note: Auxiliary outputs 1 to 2 and 3 to 4 are not insulated. The E5EC is set for a K-type thermocouple (input type = 5) by default. An input error (s.err) will occur if the input type setting does not agree with the temperature sensor. Check the input type. Relay output
250 VAC, 5 A
(resistive load) Voltage output (for driving SSR)
12 VDC, 40 mA
Control Output 2: 21 mA Linear current output 0 to 20 mA DC 4 to 20 mA DC Load: 500 Ω max. 100 to 240 VAC 24 VAC/DC Auxiliary outputs 1, 2, 3, 4 + + 011 6 event Inputs, 1 CT input, transfer output, and remote SP input V mA V I + + + + 013 6 event Inputs, transfer output, and remote SP input 36 - V mA V I 014 Communications, 4 event Inputs, transfer output, and remote SP input 34 ++ 35 36 - V mA V I EV1 EV2 EV1 EV2 EV1 EV2 EV3 EV4 EV3 EV4 EV5 EV6 EV5 EV6 EV5 EV6 B(+) A(-) RS-485 CT1 19 19 2020 1313 14 14 15 15 010 4 event inputs and 1 CT input 009 Communications, 2 event inputs, and 2 CT inputs 004 Communications and 2 event inputs 005 4 event inputs EV1 EV2 EV1 EV2 EV1 EV2 EV1 EV2 EV3 EV4 EV3 EV4 B(+) A(-) RS-485 B(+) A(-) RS-485 CT1 CT2 COM CT1 Transfer output Remote SP input Transfer output Transfer output Remote SP input Remote SP input Terminal type Auxiliary outputs 1, 2, 3, 4Control output 2Control output 1 Relay output Models with 4 auxiliary outputs: 250 VAC, 2 A (resistive load) Relay output (resistive load) Voltage output (for driving SSR) Load: 500 Ω max. (1) Control output Models with
1 Relay Output
(for Driving SSR) Models with 2 Voltage Outputs (for Driving SSR) Models with Voltage Output (for Driving SSR) and Relay Output Models with 2 Relay Outputs Models with 2 Linear Current Outputs Models with 1 Linear Current Output RX QR QX CX QQ (2) Auxiliary Outputs (3) Input Power Supply (6) Options (5) Sensor (Temperature/Analog) Input (no polarity) RR CQ Potentiometer Input Auxiliary output 2 Auxiliary output 1 Auxiliary output 4 Auxiliary output 3 Models with 2 Outputs: Linear Current Output and Voltage (for Driving SSR) Terminal type 175 11 3 V - 23 V 24+ TC 22+ mA- Pt I + + - - - - R R R R Q QQ Q OUT1OUT1OUT1 C C A B B C OUT1 OUT2 OUT1 OUT2 OUT1 OUT2 OUT1 OUT2 C Q OUT1 OUT2 O W C R R PR Open Close CC Models with 2 Position-proportional Relay Output Note: 1. The application of the terminals depends on the model. 2. Do not wire the terminals that are shown with a gray background. 3. When complying with EMC standards, the cable that connects the sensor must be 30 m or less. If the cable length exceeds 30 m, compliance with EMC standards will not be possible. 4. Connect M3 crimped terminals. Sensor input, CT inputs, potentiometer input, and remote SP input Communications and event inputs Voltage output (for driving SSR), linear current output, and transfer output Relay output Auxiliary outputs 1, 2 Auxiliary outputs 3, 4 : Reinforced insulation : Functional isolation Power Supply
Front-panel Setup Tool port Use S Key to change the digit (default setting). Use the M Key to change to another parameter. No. 1 display No. 2 display No. 3 display PV or specified parameter SP or specified parameter value Manipulated value or other value Top View of E5EC Use the U D Keys to set the parameter. Top-panel Setup Tool port Front panel Press O Key once to go to Adjustment Level. Press O Key for at least 3 seconds to go to Initial Setting Level. Operation indicators Manipulated value or other value E5EC Front Panel Temperature unit Operation indicators Press the S Key to change the digit (default setting). Press the M Key to change to another parameter. No. 1 display No. 2 display No. 3 display Press the O Key once to go to the Adjustment Level. Press the O Key for at least 3 seconds to go to the Initial Setting Level. PV or specified parameter SP or specified parameter value Manipulated value or other value Press the U or D Key to set the parameter. Top View of E5AC Front-panel Setup Tool port Top-panel Setup Tool port E5AC
Dimensions (Unit: mm) Controllers Mounting Adapter (Accessory) Waterproof Packing (Accessory) 48 60 44 91110 (64) E5EC 92-0.8 92+0.8 45+0.6 120 min. (48 × number of units − 2.5)+1.0 Group mounting does not allow waterproofing. Mounted Separately Group Mounted * Recommended panel thickness is 1 to 8 mm. Group mounting is not possible in the vertical direction. (Maintain the specified mounting space between Controllers.) To mount the Controller so that it is waterproof, insert the waterproof packing onto the Controller. When two or more Controllers are mounted, make sure that the surrounding temperature does not exceed the allowable operating temperature specified in the specifications. * Selections for Control Outputs 1 and 2: QQ, QR, RR, CC, PR, or CQ If you also specify 011, 013, or 014 for the option selection and use group mounting, the ambient temperature must be 45°C or less. If the ambient temperature is 55°C, maintain the following mounting spaces between Controllers. 45-0.6 60 min. 120 min. 92+0.8 The Setup Tool ports are on the front and top of the Digital Temperature Controller. It is used to connect the Temperature Con- troller to the computer to use the Setup Tool. The E58-CIFQ2 USB-Serial Conversion Cable is required to make the connection. Refer to the instructions that are provided with the USB-Serial Conversion Cable for the connection procedure. Note: Do not leave the USB-Serial Conversion Cable connected when you use the Temperature Controller.
(64) Mounting Adapter (Accessory) Waterproof Packing (Accessory) 91 x 91 92+0.8 120 min. (96 × number of units − 3.5)+1.0 Group mounting does not allow waterproofing. Mounted Separately Group Mounted * 92+0.8 92+0.8 E5AC Recommended panel thickness is 1 to 8 mm. Group mounting is not possible in the vertical direction. (Maintain the specified mounting space between Controllers.) To mount the Controller so that it is waterproof, insert the waterproof packing onto the Controller. When two or more Controllers are mounted, make sure that the surrounding temperature does not exceed the allowable operating temperature specified in the specifications. The Setup Tool ports are on the front and top of the Digital Temperature Controller. It is used to connect the Temperature Controller to the computer to use the Setup Tool. The E58-CIFQ2 USB-Serial Conversion Cable is required to make the connection. Refer to the instructions that are provided with the USB-Serial Conversion Cable for the connection procedure. Note: Do not leave the USB-Serial Conversion Cable connected when you use the Temperature Controller.
Accessories (Order Separately) (2110) 250 263 1510 USB connector (type A plug) Serial connector LED (SD) LED (PWR) LED (RD)
- USB-Serial Conversion Cable E58-CIFQ2 Connecting to the E58-CIFQ2 USB-Serial Conversion CableConversion Cable (1510) 250 (2110) E58-CIFQ2 (Order Separately) Conversion Cable 263 1510 Note: Always use this product together with the E58-CIFQ2.
- Conversion Cable E58-CIFQ2-E 2 3.8
- Terminal Covers E53-COV24 (Three Covers provided.)
- Waterproof Packing Y92S-P9 (for DIN 48 × 96) The Waterproof Packing is provided with the Temperature Controller. Order the Waterproof Packing separately if it becomes lost or damaged. The degree of protection when the Waterproof Packing is used is IP66. Also, keep the Port Cover on the front-panel Setup Tool port of the E5EC/E5AC securely closed. To maintain an IP66 degree of protection, the Waterproof Packing and the Port Cover for the front-panel Setup Tool port must be periodically replaced because they may deteriorate, shrink, or harden depending on the operating environment. The replacement period will vary with the operating environment. Check the required period in the actual application. Use 3 years or sooner as a guideline. If a waterproof structure is not required, then the Waterproof Packing does not need to be installed. Y92S-P10 (for DIN 96 × 96)
- Setup Tool Port Cover for top panel Y92S-P7
- Mounting Adapter Y92F-51 (Two Adapters provided.) Order this Port Cover separately if the Port Cover on the front-panel Setup Tool port is lost or damaged. The Waterproof Packing must be periodically replaced because it may deteriorate, shrink, or harden depending on the operating environment. One pair is provided with the Controller. Order this Adapter separately if it becomes lost or damaged.
- Current Transformers 131.7 115.6 29.4 21.9 (2)
- Watertight Cover Y92A-96N (96 × 96)
- Watertight Cover Y92A-49N (48 × 96) 131.7 67.6 29.4 21.9 (2) E54-CT3 Accessories Armature 15 5.8 dia. 25 3 10.5 2.8 7.5 Two, 3.5 dia. 40 × 40 12 dia. 2.36 dia. Two, M3 (depth: 4) Approx. 3 dia. (22) Approx. 6 dia. Plug Armature Lead E54-CT1 E54-CT3 Connection Example P l u g Thru-current (Io) vs. Output Voltage (Eo) (Reference Values) E54-CT1 Maximum continuous heater current: 50 A (50/60 Hz) Number of windings: 400 ±2 Winding resistance: 18 ±2 Ω Thru-current (Io) A (r.m.s.) 1 10 100mA 1 10 100 1,000A 100V Frequency: 50 Hz 100Ω RL=10Ω ∞10 100mV 100μV 1kΩ Distortion factor 10% Output voltage (Eo) V (r.m.s.) Thru-current (Io) vs. Output Voltage (Eo) (Reference Values) E54-CT3 Maximum continuous heater current: 120 A (50/60 Hz) (Maximum continuous heater current for an OMRON Digital Temperature Controller is 50 A.) Number of windings: 400 ±2 Winding resistance: 8 ±0.8 Ω Thru-current (Io) A (r.m.s.) 1 10 100mA 1 10 100 1,000A 100V Frequency: 50 Hz 1kΩ 100Ω 50Ω RL=10Ω 500Ω ∞10 100mV 100μV Distortion factor 10% Output voltage (Eo) V (r.m.s.)
Digital Temperature Controller E5DC (22.5 mm Wide, and DIN Track-mounting Type) The E5DC Mounts to DIN Track and Is Ideal for Connections to HMIs and PLCs. It provides the Same Easy Operation and Advanced Performance as the Rest of the E5@C Series. A slim body at 85 × 22.5 mm (D × W) that fits into narrow control panels and mounts to DIN Track. Removable terminal block for easy replacement to simplify maintenance. High-speed sampling at 50 ms for applications with high-speed temperature increases. Easy connections to a PLC with programless communications. Set up the Controller without wiring the power supply by connecting to the computer with a Communications Conversion Cable (sold separately). Setup is easy with the CX-Thermo (sold separately). Models are available with up to 2 auxiliary outputs and 1 event input to complete basic functions. A white PV display (height: 8.5 mm) is easy to read when setting up, checking alarms, and making settings in a control panel. Main I/O Functions 22.5 mm Wide, and DIN Track-mounting Type E5DC Refer to Safety Precautions on page 104. Refer to your OMRON website for the most recent information on applicable safety standards. Event Inputs None 1 Control Output 1 Relay output Voltage output (for driving SSR) Linear current output Auxiliary Outputs None 2 Dual displays: PV/SV 4-digit displays PF (shift) Key Temperature status display Simple programming Changed parameter display Display brightness setting Serial Communications None RS-485 E5DC Independent heating and cooling PID control Sensor Input Indication Accuracy
- Thermocouple input: ±0.3% of PV
- Pt input: ±0.2% of PV
- Analog input: ±0.2% of FS Sampling Period
- 50 ms Universal input
- Thermocouple
- Pt
- Analog current/voltage This datasheet is provided as a guideline for selecting products. Be sure to refer to the following manuals for application precautions and other information required for operation before attempting to use the product. E5@C Digital Temperature Controllers User’s Manual (Cat. No. H174) E5@C Digital Temperature Controllers Communications Manual (Cat. No. H175)
Model Number Legend and Standard Models Model Number Legend
- Models with Screw Terminals *1 Option 000 can be selected only if two auxiliary outputs are selected. *2 Options 002 and 017 can be selected only if the control output is a relay output or voltage output and two auxiliary outputs are selected. *3 Option 015 cannot be selected if the control output is a rela y output or voltage output and two auxiliary outputs are selected. *4 Options 016 can be selected only if the control output is a linear current output and two auxiliary outputs are selected. *5 The control output cannot be used as a transfer output. List of Models Note: These products are sold as a set with a terminal block (i.e., Terminal Unit). Heating and Cooling Control
- Using Heating and Cooling Control A Control Output Assignment An auxiliary output is used as the cooling control output. B Control If PID control is used, you can set PID control separately for heating and cooling. This allows you to handle control systems with different heating and cooling response characteristics. Model A B C D E F MeaningControl output 1 No. of auxiliary outputs Power supply voltage Terminal type Input type Options E5DC 22.5 mm wide and mounts to DIN Track Control output 1 Control output 2 RX Relay output None QX Voltage output (for driving SSR) None CX Linear current output *5 None
2 2 (one common) A 100 to 240 VAC D 24 VAC/DC S Screw terminals M Universal input HB alarm and HS alarm Communications Event input *1 000 --- --- --- *4 016 --- --- 1 *2 017 1 --- 1 Control output No. of auxiliary outputs Options Model Model HB alarm and HS alarm No. of event inputs Communications Power supply voltage Power supply voltage 100 to 240 VAC 24 VAC/DC Relay output --- --- --- RS-485 E5DC-RX0ASM-015 E5DC-RX0DSM-015 --- E5DC-RX2ASM-000 E5DC-RX2DSM-000 Detection for single- phase heater RS-485 E5DC-RX2ASM-002 E5DC-RX2DSM-002 1 --- E5DC-RX2ASM-017 E5DC-RX2DSM-017 Voltage output (for driving SSR) --- --- --- RS-485 E5DC-QX0ASM-015 E5DC-QX0DSM-015 --- E5DC-QX2ASM-000 E5DC-QX2DSM-000 Detection for single- phase heater RS-485 E5DC-QX2ASM-002 E5DC-QX2DSM-002 1 --- E5DC-QX2ASM-017 E5DC-QX2DSM-017 Linear current output --- --- --- RS-485 E5DC-CX0ASM-015 E5DC-CX0DSM-015 --- E5DC-CX2ASM-000 E5DC-CX2DSM-000 RS-485 E5DC-CX2ASM-015 E5DC-CX2DSM-015 1 --- E5DC-CX2ASM-016 E5DC-CX2DSM-016
Optional Products (Order Separately) USB-Serial Conversion Cable Communications Conversion Cable Note: Always use this product together with the E58-CIFQ2. This Cable is used to connect to the front-panel Setup Tool port. Current Transformers (CTs) Mounting Adapter Short Bars CX-Thermo Support Software Note: CX-Thermo version 4.6 or higher is required for the E5DC. For the system requirements for the CX-Thermo, refer to information on the EST2-2C-MV4 on the OMRON website (www.ia.omron.com). End Plate Spacer DIN Tracks Unit Labels End Cover Model E58-CIFQ2 Model E58-CIFQ2-E Hole diameter Model 5.8 mm E54-CT1 12.0 mm E54-CT3 Model Y92F-53 (2pcs) Model Y92S-P11 (4 pcs) Model EST2-2C-MV4 Model PFP-M Model PFP-S Model PFP-100N PFP-50N Model Y92S-L2 Model Y92F-54
- Only two set points are selectable for event inputs. Power supply voltage A in model number: 100 to 240 VAC, 50/60 Hz D in model number: 24 VAC, 50/60 Hz; 24 VDC Operating voltage range 85% to 110% of rated supply voltage Sensor input Temperature input Thermocouple: K, J, T, E, L, U, N, R, S, B, W, or PL II Platinum resistance thermometer: Pt100 or JPt100 Infrared temperature sensor (ES1B): 10 to 70°C, 60 to 120°C, 115 to 165°C, or 140 to 260°C Analog input Current input: 4 to 20 mA or 0 to 20 mA Voltage input: 1 to 5 V, 0 to 5 V, or 0 to 10 V Input impedance Current input: 150 Ω max., Voltage input: 1 MΩ min. (Use a 1:1 connection when connecting the ES2-HB/ THB.) Control method ON/OFF control or 2-PID control (with auto-tuning) Control output Relay output SPST-NO, 250 VAC, 3 A (resistive load), electrical life: 100,000 operations, minimum applicable load: 5 V, 10 mA (reference value) Voltage output (for driving SSR) Output voltage 12 VDC ±20% (PNP), max. Load current: 21 mA, with short-circuit protection circuit Linear current output 4 to 20 mA DC/0 to 20 mA DC, load: 500 Ω max., resolution: Approx. 10,000 Auxiliary output Number of outputs 2 (depends on model) Output specifications SPST-NO relay outputs: 250 VAC, 2 A (resistive load), Electrical life: 100,000 operations, Minimum applicable load: 10 mA at 5 V (reference value) Event input Number of inputs 1 (depends on model) External contact input specifications Contact input ON: 1 kΩ max., OFF: 100 kΩ min. Non-contact input ON: Residual voltage 1.5 V max.; OFF: Leakage current 0.1 mA max. Current flow: approx. 7 mA per contact Setting method Digital setting using front panel keys Indication method 11-segment digital displays and individual indicators Character height: PV: 8.5 mm, SV: 8.0 mm Multi SP Up to eight set points (SP0 to SP7) can be saved and selected using the event inputs, key operations, or serial communications.* Bank switching None Other functions Manual output, heating/cooling control, loop burnout alarm, SP ramp, other alarm functions, heater burn- out (HB) alarm (including SSR failure (HS) alarm), 40% AT, 100% AT, MV limiter, input digital filter, self tuning, robust tuning, PV input shift, run/stop, protection functions, extraction of square root, MV change rate limit, logic operations, temperature status display, simple programming, moving average of input val- ue, and display brightness setting Ambient operating temperature −10 to 55°C (with no condensation or icing), For 3-year warranty: −10 to 50°C with standard mounting (with no condensation or icing) Ambient operating humidity 25% to 85% Storage temperature −25 to 65°C (with no condensation or icing) Altitude 2,000 m max. Recommended fuse T2A, 250 VAC, time-lag, low-breaking capacity Installation environment Installation Category II, Pollution Degree 2 (IEC 61010-1 compliant)
- Thermocouple/Platinum Resistance Thermometer (Universal inputs) Shaded settings are the default settings. The applicable standards for the input types are as follows: K, J, T, E, N, R, S, B: JIS C 1602-1995, IEC 60584-1 JPt100: JIS C 1604-1989, JIS C 1606-1989 L: Fe-CuNi, DIN 43710-1985 Pt100: JIS C 1604-1997, IEC 60751 U: Cu-CuNi, DIN 43710-1985 PL II: According to Platinel II el ectromotive force charts from BASF (previously Engelhard) W: W5Re/W26Re, ASTM E988-1990
- Analog input Sensor type Platinum resistance thermometer Thermocouple Infrared temperature sensor Sensor specifica- tion Pt100 JPt100 K J T E L U N R S B W PLII 10 to 70°C 60 to 120°C 115 to 165°C 140 to 260°C 2300 1800 1700 1600 1500 1400 1300 1200 1100 1000 900 800 700 600 500 400 300 200 100 -100 -200 2300 1800 1700 1700 1300 1300 1300 850 850 850 600 500.0 500.0 500.0 400.0 400 400.0 400 400.0 260 120 165 100.0 100.0 90 100 0.0 0.0 00 000000 -200 -199.9 -199.9 -200 -200 -199.9 -200 -200 -199.9 -200 Set value 01234 56789 1 0 1 1 1 2 1 3 1 4 1 5 1 6 1 7 1 8 1 9 2 0 2 1 2 2 2 3 2 4 Input type Current Voltage Input specification 4 to 20 mA 0 to 20 mA 1 to 5 V 0 to 5 V 0 to 10 V Setting range Usable in the following ranges by scaling: -1999 to 9999, -199.9 to 999.9, -19.99 to 99.99 or -1.999 to 9.999 Set value 25 26 27 28 29 Temperature range (°C)
Each alarm can be independently set to one of the following 17 alarm types. The default is 2: Upper limit. (See note.) Auxiliary outputs are allocated to alarms. ON delays and OFF delays (0 to 999 s) can also be specified. Note: In the default settings for models with HB or HS alarms, alarm 1 is set to a heater alarm (HA) and the Alarm Type 1 parameter is not displayed. To use alarm 1, set the output assignment to alarm 1. Set value Alarm type Alarm output operation Description of functionWhen alarm value X is positive When alarm value X is negative Set the upward deviation in the set point for the alarm upper limit (H) and the lower deviation in the set point for the alarm lower limit (L). The alarm is ON when the PV is outside this deviation range. (default) Upper-limit Set the upward deviation in the set point by setting the alarm value (X). The alarm is ON when the PV is higher than the SP by the deviation or more. Set the downward deviation in the set point by setting the alarm value (X). The alarm is ON when the PV is lower than the SP by the deviation or more. range *1 Set the upward deviation in the set point for the alarm upper limit (H) and the lower deviation in the set point for the alarm lower limit (L). The alarm is ON when the PV is inside this de- viation range. with standby sequence *1 *4 A standby sequence is added to the upper- and lower-limit alarm (1). *6 sequence A standby sequence is added to the upper-limit alarm (2). *6 sequence A standby sequence is added to the lower-limit alarm (3). *6 The alarm will turn ON if the process value is larger than the alarm value (X) regardless of the set point. alarm value (X) regardless of the set point. it with standby sequence A standby sequence is added to the absolute-value upper- limit alarm (8). *6 with standby sequence A standby sequence is added to the absolute-value lower- limit alarm (9). *6 LBA (alarm 1 type only) -* 7 This alarm type turns ON the alarm when the set point (SP) is higher than the alarm value (X). This alarm type turns ON the alarm when the set point (SP) is lower than the alarm value (X). upper-limit alarm *9 Standard Control Standard Control This alarm type turns ON the alarm when the manipulated variable (MV) is higher than the alarm value (X).Heating/Cooling Control (Heating MV) Heating/Cooling Control (Heating MV) Always ON lower-limit alarm *9 Standard Control Standard Control This alarm type turns ON the alarm when the manipulated variable (MV) is lower than the alarm value (X).Heating/Cooling Control (Cooling MV) Heating/Cooling Control (Cooling MV) Always ON ON OFF PV SP LH SP XON OFF PV SP XON OFF PV SP XON OFF PV SP XON OFF PV SP LHON OFF PV SP LHON OFF PV SP XON OFF PV SP XON OFF PVSP XON OFF PV SP XON OFF PV0 XON OFF PV XON OFF PV0 XON OFF PV XON OFF PV0 XON OFF PV XON OFF PV0 XON OFF PV XON OFF PV XON OFF SP XON OFF SP0 XON OFF SP XON OFF SP XON OFF MV XON OFF MV XON OFF MV XON OFF MV XON OFF MV XON OFF MV
*1 With set values 1, 4, and 5, t he upper- and lower-limit values can be set independently for each alarm type, and are expressed as “L” and “H.” *2 Set value: 1, Upper- and lower-limit alarm *3 Set value: 4, Upper- and lower-limit range *4 Set value: 5, Upper- and lower-limit with standby sequence For Upper- and Lower-Limit Alarm Described Above at *2
- In cases 1 and 2 above, the alarm is always OFF if the upper- and lower-limit hysteresis overlaps.
- In case 3, the alarm is always OFF. *5 Set value: 5, Upper- and lower- limit alarm with standby sequence The alarm is always OFF if upper- and lower-limit hysteresis overlaps. *6 Refer to the E5@C Digital Temperature Controllers User’s Manual (Cat. No. H174) for information on the operation of the standby sequence. *7 Refer to the E5@C Digital Temperature Controllers User’s Manual (Cat. No. H174) for information on the LBA. *8 Refer to the E5@C Digital Temperature Controllers User’s Manual (Cat. No. H174) for information on the PV change rate alarm. *9 When heating/cooling control is performed, the MV absolute- value upper-limit alarm functions only for the heating operation and the MV absolute-value lower-limit alarm functions only for the cooling operation. LH S P LHSP LHS P LHS P L H SP Case 1 Case 2 Case 3 (Always OFF) H<0, L>0 H>0, L<0 H<0, L<0 H<0, L>0 H>0, L<0 LH S P LHSP LHS P L L HS P H SP Case 1 Case 2 Case 3 (Always ON) H<0, L<0 H<0, L>0 H>0, L<0 H<0, L>0 H>0, L<0
*1 The indication accuracy of K thermocouples in the −200 to 1,300°C range, T and N thermocouples at a temperature of −100°C max., and U and L thermocouples at any temperature is ±2°C ±1 digit max. The indication accuracy of B thermocouples at a temperature of 400°C max. is not specified. The indication accuracy of B thermocouples at a temperature of 400 to 800°C is ±3°C max. The indication accuracy of R and S thermocouples at a temperature of 200°C max. is ±3°C ±1 digit max. The indication accuracy of W thermocouples is (±0.3% of PV or ±3°C, whichever is greater) ±1 digit max. The indication accuracy of PLII thermocouples is (±0.3% of PV or ±2°C, whichever is greater) ±1 digit max. *2 Ambient temperature: −10 °C to 23°C to 55°C, Voltage range: −15% to 10% of rated voltage *3 K thermocouple at −100°C max.: ±10°C max. *4 The unit is determined by the setting of the Integral/Derivative Time Unit parameter. *5 External serial communications (RS-485) and USB-Serial Conversion Cable communications can be used at the same time. Indication accuracy (when mounted individually, ambi- ent temperature of 23°C) Thermocouple: ( ±0.3 % of indication value or ±1°C, whichever is greater) ±1 digit max.*1 Platinum resistance thermometer: (±0.2 % of indication value or ±0.8°C, whichever is greater) ±1 digit max. Analog input: ±0.2% FS ±1 digit max. CT input: ±5% FS ±1 digit max. Influence of temperature *2 Thermocouple input (R, S, B, W, PL II): (±1% of indication value or ±10°C, whichever is greater) ±1 digit max. Other thermocouple input: (±1% of indication value or ±4°C, whichever is greater) ±1 digit max. *3 Platinum resistance thermometer: (±1% of indication value or ±2°C, whichever is greater) ±1 digit max. Analog input: ±1% FS ±1 digit max. CT input: ±5% FS ±1 digit max. Influence of voltage *2 Installation influence (E5DC only) R, S, B, W, or PLII thermocouple: (±1% of PV or ±10°C, whichever is greater) ±1 digit max. Other thermocouple: (±1% of PV or ±4°C, whichever is greater) ±1 digit max. *3 Input sampling period 50 ms Hysteresis Temperature input: 0.1 to 999.9°C or °F (in units of 0.1°C or °F) Analog input: 0.01% to 99.99% FS (in units of 0.01% FS) Proportional band (P) Temperature input: 0.1 to 999.9°C or °F (in units of 0.1°C or °F) Analog input: 0.1% to 999.9% FS (in units of 0.1% FS) Integral time (I) 0 to 9999 s (in units of 1 s), 0.0 to 999.9 s (in units of 0.1 s) *4 Derivative time (D) 0 to 9999 s (in units of 1 s), 0.0 to 999.9 s (in units of 0.1 s) *4 Proportional band (P) for cooling Temperature input: 0.1 to 999.9°C or °F (in units of 0.1°C or °F) Analog input: 0.1% to 999.9% FS (in units of 0.1% FS) Integral time (I) for cooling 0 to 9999 s (in units of 1 s), 0.0 to 999.9 s (in units of 0.1 s) *4 Derivative time (D) for cooling 0 to 9999 s (in units of 1 s), 0.0 to 999.9 s (in units of 0.1 s) *4 Control period 0.1, 0.2, 0.5, 1 to 99 s (in units of 1 s) Manual reset value 0.0% to 100.0% (in units of 0.1%) Alarm setting range −1,999 to 9,999 (decimal point position depends on input type) Influence of signal source resis- Insulation resistance 20 MΩ min. (at 500 VDC) Dielectric strength 3,000 VAC, 50/60 Hz for 1 min between terminals of different charge Vibration Malfunction 10 to 55 Hz, 20 m/s2 for 10 min each in X, Y and Z directions Resistance 10 to 55 Hz, 20 m/s2 for 2 hr each in X, Y, and Z directions Shock Malfunction 100 m/s2, 3 times each in X, Y, and Z directions Resistance 300 m/s2, 3 times each in X, Y, and Z directions Weight Controller: Approx. 120 g Degree of protection Main unit: IP20, Terminal unit: IP00 Memory protection Non-volatile memory (number of writes: 1,000,000 times) Setup Tool CX-Thermo version 4.6 or higher Setup Tool port E5DC bottom panel: An E58-CIFQ2 USB-Serial Conversion Cable is used to connect a USB port on the computer. *5 E5DC front panel: An E58-CIFQ2 USB-Serial Conversion Cable and E58-CIFQ2-E Conversion Cable are used together to connect a USB port on the computer.*5 Standards Approved standards UL 61010-1, Korean Radio Waves Act (Act 10564) Conformed standards EN 61010-1 (IEC 61010-1): Pollution Degree 2 , overvoltage category II EMC EMI: EN61326 Radiated Interference Electromagnetic Field Strength: EN55011 Group 1, class A Noise Terminal Voltage: EN55011 Group 1, class A EMS: EN61326 ESD Immunity: EN61000-4-2 Electromagnetic Field Immunity: EN61000-4-3 Burst Noise Immunity: EN61000-4-4 Conducted Disturbance Immunity: EN61000-4-6 Surge Immunity: EN61000-4-5 Voltage Dip/Interrupting Immunity: EN61000-4-11
USB-Serial Conversion Cable Windows is a registered trademark of Microsoft Corporation in the United States and or other countries. * Use a high-power port for the USB port. Note: A driver must be installed on the computer. Refer to the Instruction Manual included with the Cable for the installation procedure. Communications Specifications * The baud rate, data bit length, stop bit length, and vertical parity can be individually set using the Communications Setting Level. Communications Functions MELSEC is a registered trademark of Mitsubishi Electric Corporation. KEYENCE is a registered trademark of Keyence Corporation. *1 A Temperature Controller with ve rsion 2.1 or higher is required for the FX Series or the KV Series. *2 Both the programless communications and the component communications support the copying. Current Transformer (Order Separately) Ratings Heater Burnout Alarms and SSR Failure Alarms *1 For heater burnout alarms, the heater current will be measured when the control output is ON, and the output will turn ON if the heater current is lower than the set value (i.e., heater burnout detection current value). *2 For SSR failure alarms, the heater current will be measured when the control output is OFF, and the output will turn ON if the heater current is higher than the set value (i.e., SSR failure detection current value). *3 The value is 30 ms for a control period of 0.1 s or 0.2 s. *4 The value is 35 ms for a control period of 0.1 s or 0.2 s. Electrical Life Expectancy Curve for Control Output Relay (Reference Values) Applicable OS Windows XP, Vista, or 7 Applicable software CX-Thermo version 4.6 or higher Applicable models E5@C-T Series, E5@C Series, and E5CB Series USB interface standard Conforms to USB Specification 2.0 DTE speed 38,400 bps Connector specifications Computer: USB (Type A plug) Digital Temperature Controller: Special serial con- nector Power supply Bus power (Supplied from the USB host controller) * Power supply voltage 5 VDC Current consumption 450 mA max. Output voltage 4.7±0.2 VDC (Supplied from USB-Serial Conver- sion Cable to the Digital Temperature Controller.) Output current 250 mA max. (Supplied from USB-Serial Conver- sion Cable to the Digital Temperature Controller.) Ambient operating temperature 0 to 55°C (with no condensation or icing) Ambient operating humidity 10% to 80% Storage temperature −20 to 60°C (with no condensation or icing) Storage humidity 10% to 80% Altitude 2,000 m max. Weight Approx. 120 g Transmission line connection method RS-485: Multidrop Communications RS-485 (two-wire, half duplex) Synchronization method Start-stop synchronization Protocol CompoWay/F, or Modbus Baud rate* 9,600, 19,200, 38,400, or 57,600 bps Transmission code ASCII Data bit length * 7 or 8 bits Stop bit length * 1 or 2 bits Error detection Vertical parity (none, even, odd) Block check character (BCC) with CompoWay/F or CRC-16 with Modbus Flow control None Interface RS-485 Retry function None Communications buffer 217 bytes Communications response wait time 0 to 99 ms Default: 20 msProgramless communica- tions You can use the memory in the PLC to read and write E5@C parameters, start and stop operation, etc. The E5@C automatically performs communications with PLCs. No communications programming is required. Number of connected Digital Temperature Controllers: 32 max. (Up to 16 for the FX Series) Applicable PLCs: OMRON PLCs CS Series, CJ Series, or CP Series Mitsubishi Electric PLCs MELSEC Q Series, L Series, or FX Series (compati- ble with the FX2 or FX3 (excluding the FX1S)) KEYENCE PLCs KEYENCE KV Series Component Communica- tions When Digital Temperature Controllers are connected, set points and RUN/STOP commands can be sent from the Digi- tal Temperature Controller that is set as the master to the Dig- ital Temperature Controllers that are set as slaves. Slope and offsets can be set for the set point. Number of connected Digital Temperature Controllers: 32 max. (including master) Copying*2 When Digital Temperature Controllers are connected, the pa- rameters can be copied from the Digital Temperature Control- ler that is set as the master to the Digital Temperature Controllers that are set as slaves. Dielectric strength 1,000 VAC for 1 min Vibration resistance 50 Hz, 98 m/s2 Weight E54-CT1: Approx. 11.5 g, E54-CT3: Approx. 50 g Accessories (E54-CT3 only) Armatures (2) Plugs (2) CT input (for heater current detection) Models with detection for single-phase heat- ers: One input Maximum heater current 50 A AC Input current indication accuracy ±5% FS ±1 digit max. Heater burnout alarm setting range *1 0.1 to 49.9 A (in units of 0.1 A) Minimum detection ON time: 100 ms *3 SSR failure alarm setting range *2 0.1 to 49.9 A (in units of 0.1 A) Minimum detection OFF time: 100 ms *4 500 300 100 0 12345 6 Switching current (A) E5DC (resistive load) cosφ = 1 Life (× 104 operations)
Note: 1. The application of the terminals depends on the model. 2. Do not wire the terminals that are shown with a gray background. 3. When complying with EMC standards, the cable that connects the sensor must be 30 m or less. If the cable length exceeds 30m, compliance with EMC standards will not be possible. 4. Connect M3 crimped terminals. Isolation/Insulation Block Diagrams Note: Auxiliary outputs 1 to 2 are not insulated. TC Pt mA I V V 6 - RX QX CX CQR CT1RS-485 B(+) A(-) RS-485 B(+) A(-) EV1 CT1 EV1 A B B 81 4 Sensor (Temperature/Analog) Input Auxiliary output 2 Auxiliary output 1 Control Output 1 linear current output 1 relay output 1 voltage output (for driving SSR) Input Power Supply (no polarity) 100 to 240 VAC 24 VAC/DC Auxiliary Outputs Control output Relay output Voltage output (for driving SSR) Load: 500 Ω max. 4 to 20 mA DC Relay outputs
250 VAC: 2 A (resistive load)
Auxiliary outputs 1, 2 OptionsControl output E5DC Do not connect anything to the terminals that are shaded gray. 017 One event input and one CT 016 One event input 015 Communications 002 Communications and 1 CT Options The E5DC is set for a K-type thermocouple (input type = 5) by default. An input error (s.err) will occur if the input type setting does not agree with the temperature sensor. Check the input type. SM Sensor input and CT input Communications and event input Voltage output (for driving SSR) and linear current output Relay output Auxiliary outputs 1 and 2 : Reinforced insulation : Functional isolation Power supply
Dimensions (Unit: mm) Controllers Front-panel Setup Tool port Front panel Bottom View of E5DC Operation indicators PV or specified parameter SP or specified parameter value No. 1 display No.2 display Use the M Key to change to another parameter. Use the U D Keys to set the parameter. Press O Key for at least 3 seconds to go to Initial Setting Level. Use S Key to change the digit (default setting). Bottom- panel Setup Tool port Press O Key once to go to Adjustment Level. E5DC 22.7+0.3 120 min Mounted Separately Two-Unit Mounting Group Mounted 92 +0.8 45 +0.6 92 +0.8 92 +0.8 (22.5 × number of units) +1.0 96 110 91 (85) 22.5 22.5 Mounting Adapter (Accessory: Sold separately) E5DC Recommended panel thickness is 1 to 8 mm. Group mounting is not possible in the vertical direction. (Maintain the specified mounting space between Controllers.) When two or more Digital Temperature Controllers are mounted, make sure that the surrounding temperature does not exceed the allowable operating temperature specified in the specifications. The Setup Tool ports are on the front and bottom of the Digital Temperature Controller. It is used to connect the Temperature Controller to the computer to use the Setup Tool. The E58-CIFQ2 USB-Serial Conversion Cable is required to make the connection. Refer to the instructions that are provided with the USB-Serial Conversion Cable fo r the connection procedure. Note: Do not leave the USB-Serial Conversion Cable connected when you use the Digital Temperature Controller.
Accessories (Order Separately)
- Current Transformers (2110) 250 263 1510 USB connector (type A plug) Serial connector LED (SD) LED (PWR) LED (RD)
- USB-Serial Conversion Cable E58-CIFQ2 Connecting to the E58-CIFQ2 USB-Serial Conversion CableConversion Cable (1510) 250 (2110) E58-CIFQ2 (Order separately) Conversion Cable 263 1510
- Conversion Cable E58-CIFQ2-E Note: Always use this product together with the E58-CIFQ2. E54-CT3 Accessories Armature 15 5.8 dia. 25 3 10.5 2.8 7.5 Two, 3.5 dia. 40 × 40 12 dia. 2.36 dia. Two , M3 holes (depth: 4) Approx. 3 dia. (22) Approx. 6 dia. Plug Armature Lead E54-CT1 E54-CT3 Connection Example P l u g Thru-current (Io) vs. Output Voltage (Eo) (Reference Values) E54-CT1 Maximum continuous heater current: 50 A (50/60 Hz) Number of windings: 400 ±2 Winding resistance: 18 ±2 Ω 1 10 100mA 1 10 100 1,000A 100V 100mV Thru-current (Io) A (r.m.s.) Frequency: 50 Hz 100Ω RL=10Ω 100μV 1kΩ Distortion factor 10% Output voltage (Eo) V (r.m.s.) Thru-current (Io) vs. Output Voltage (Eo) (Reference Values) E54-CT3 Maximum continuous heater current: 120 A (50/60 Hz) (Maximum continuous heater current for an OMRON Digital Temperature Con- troller is 50 A.) Number of windings: 400±2 Winding resistance: 8±0.8 Ω 1 10 100mA 1 10 100 1,000A 100V 100mV Thru-current (Io) A (r.m.s.) Frequency: 50 Hz 1kΩ 100Ω 50Ω RL=10Ω 500Ω 100μV Distortion factor 10% Output voltage (Eo) V (r.m.s.)
- Mounting Adapters Y92F-53 (Two included.)
- Short Bars Y92S-P11 (Four included.)
- End Plate PFP-M
- DIN Tracks PFP-100N PFP-50N
- Spacer PFP-S
- Unit Labels Y92S-L2
- End Cover Y92F-54 (Two included.) 34.7 11.8 9.4 This accessory is not included with the product. Order it separately to mount the product to a panel. 2.4 0.8 24.8 27.5 22.5 Use this product to connect between terminals (for power supplies, communications, etc.) when you use multiple E5DC Controllers. 11.5 M4×8 pan head screw M4 spring washer 4.8 1.3 1.8 6.2 1.8 35.5 35.3 4.5 15 25 2510 10 1000 (500)* 25 25 15 (5)* 35±0.3 7.3±0.15 27±0.15 * Dimensions in parentheses are for the PFP-50N. 44.3 34.8 16.5 The Unit Labels for the Digital Panel Meter are used. Use either the °C or °F label from the sheet. 5.33.9 6896 Use the End Cover when you mount the E5DC to a panel to hide the gap between the Controller and the panel.
Programmable Temperature Controller (Digital Controller) E5CC-T (48 × 48 mm) Programmable Controllers Join the E5C Series! Program up to 256 segments can handle a wide variety of applications. Set up to 8 Programs (Patterns) with 32 Segments (Steps) Each The white PV display with a height of 15.2 mm improves visibility. High-speed sampling at 50 ms. Models are available with up to 3 auxiliary outputs, up to 4 event inputs, and a transfer output to cover a wide range of applications. Short body with depth of only 60 mm. Set up the Controller without wiring the power supply by connecting to the computer with a Communications Conversion Cable (sold separately). Setup is easy with the CX-Thermo (sold separately). Easy connections to a PLC with programless communications. Use component communications to link Temperature Controllers to each other. Main I/O Functions 48 × 48 mm E5CC-T Refer to Safety Precautions on page 104. Refer to your OMRON website for the most recent information on applicable safety standards. Sensor Input Universal input
- Thermocouple
- Pt
- Analog current/voltage E5CC-T Dual displays: PV/SV 4-digit displays Indication Accuracy
- Thermocouple input: ±0.3% of PV
- Pt input: ±0.2% of PV
- Analog input: ±0.2% of FS Sampling Period
- 50 ms Event Inputs
- None
- 2
- 4 Control Output 1
- Relay output
- Voltage output (for driving SSR)
- Linear current output Control Output 2
- None
- Voltage output (for driving SSR) Transfer Output
- None
- 1
- PF (shift) Key
- Temperature status display
- Operating and editing the program
- Independent heating and cooling PID control
- Parameter mask setting
- Display brightness setting Auxiliary Outputs
- 3 Serial Communications
- None
- RS-485 This datasheet is provided as a guideline for selecting products. Be sure to refer to the following manuals for application precautions and other information required for operation before attempting to use the product. E5@C-T Digital Temperature Controllers Programmable Type User’s Manual (Cat. No. H185) E5@C-T Digital Temperature Controllers Programmable Type Communications Manual (Cat. No. H186)
Model Number Legend and Standard Models Model Number Legend
- Models with Screw Terminals *1. Options with HB and HS alarms (001 and 003) cannot be selected if a linear current output is selected for the control output . *2. The linear current output cannot be used as a transfer output. *3. Option 004 can be selected only when “CX” is selected for the control outputs. Heating and Cooling Control
- Using Heating and Cooling Control A Control Output Assignment If there is no control output 2, an auxiliary output is used as the cooling control output. If there is a control output 2, the two control outputs are used for heating and cooling. (It does not matter which output is used for heating and which output is used for cooling.) B Control If PID control is used, you can set PID control separately for heating and cooling. This allows you to handle control systems with different heating and cooling response characteristics. Model A B C D E F MeaningControl outputs 1 and 2 No. of auxiliary outputs Power supply voltage Terminal type Input type Options E5CC-T 48 × 48 mm Programmable Type Control output 1 Control output 2 RX Relay output None QX Voltage output (for driving SSR) None *1 CX Linear current output *2 None QQ Voltage output (for driving SSR) Voltage output (for driving SSR) CQ Linear current output *2 Voltage output (for driving SSR) 3 3 (one common) A 100 to 240 VAC D 24 VAC/DC
*1 001 1 --- 2 --- *1 003 2 (for 3-phase heaters) RS-485 --- --- 005 --- --- 4 --- 006 --- --- 2 Provided.
Optional Products (Order Separately) USB-Serial Conversion Cable Terminal Covers Note: The Terminal Covers E53-COV23 are provided with the Digital Temperature Controller. The E53-COV10 cannot be used. Refer to page 75 for the mounted dimensions. Waterproof Packing Note: The Waterproof Packing is provided with the Digital Temperature Controller. Current Transformers (CTs) Adapter Note: Use this Adapter when the panel has already been prepared for an E5B@ Controller. Waterproof Cover Mounting Adapter Note: This Mounting Adapter is provided with the Digital Temperature Controller. DIN Track Mounting Adapter Front Covers CX-Thermo Support Software Note: CX-Thermo version 4.61 or higher is required for the E5CC-T. For the system requirements for the CX-Thermo, refer to information on the EST2-2C-MV4 on the OMRON website (www.ia.omron.com). Model E58-CIFQ2 Model E53-COV17 E53-COV23 (3pcs) Model Y92S-P8 Hole diameter Model 5.8 mm E54-CT1 12.0 mm E54-CT3 Model Y92F-45 Model Y92A-48N Model Y92F-49 Model Y92F-52 Type Model Hard Front Cover Y92A-48H Soft Front Cover Y92A-48D Model EST2-2C-MV4
Power supply voltage A in model number: 100 to 240 VAC, 50/60 Hz D in model number: 24 VAC, 50/60 Hz; 24 VDC Operating voltage range 85% to 110% of rated supply voltage Sensor input Temperature input Thermocouple: K, J, T, E, L, U, N, R, S, B, W, or PL II Platinum resistance thermometer: Pt100 or JPt100 Infrared temperature sensor (ES1B): 10 to 70°C, 60 to 120°C, 115 to 165°C, or 140 to 260°C Analog input Current input: 4 to 20 mA or 0 to 20 mA Voltage input: 1 to 5 V, 0 to 5 V, or 0 to 10 V Input impedance Current input: 150 Ω max., Voltage input: 1 MΩ min. (Use a 1:1 connection when connecting the ES2-HB/THB.) Control method 2-PID control (with auto-tuning) or ON/OFF control Control output Relay output SPST-NO, 250 VAC, 3 A (resistive load), electrical life: 100,000 operations, minimum applicable load:
5 V, 10 mA (reference value)
(for driving SSR) Output voltage: 12 VDC ±20% (PNP), max. load current: 21 mA, with short-circuit protection circuit Linear current output 4 to 20 mA DC/0 to 20 mA DC, load: 500 Ω max., resolution: approx. 10,000 Auxiliary output Number of outputs 3 Output specifications SPST-NO relay outputs, 250 VAC, Models with 3 outputs: 2 A (resistive load), Electrical life: 100,000 operations, Minimum applicable load: 10 mA at 5 V (reference value) Event input Number of inputs 2 or 4 (depends on model) External contact input specifications Contact input: ON: 1 kΩ max., OFF: 100 kΩ min. Non-contact input: ON: Residual voltage: 1.5 V max., OFF: Leakage current: 0.1 mA max. Current flow: Approx. 7 mA per contact Transfer output Number of outputs 1 (only on models with a transfer output) Output specifications Current output: 4 to 20 mA DC, load: 500 Ω max., resolution: approx. 10,000 Linear voltage output: 1 to 5 VDC, load: 1 kΩ min., resolution: Approx. 10,000 Setting method Digital setting using front panel keys Indication method 11-segment digital display and individual indicators Character height: PV: 15.2 mm, SV: 7.1 mm Bank switching None Other functions Manual output, heating/cooling control, loop burnout alarm, other alarm functions, heater burnout (HB) alarm (including SSR failure (HS) alarm), 40% AT, 100% AT, MV limiter, input digital filter, robust tuning, PV input shift, protection functions, extraction of square root, MV change rate limit, logic operations, temperature status display, moving average of input value, and display brightness setting Ambient operating temperature −10 to 55°C (with no condensation or icing), For 3-year warranty: −10 to 50°C with standard mounting (with no condensation or icing) Ambient operating humidity 25% to 85% Storage temperature −25 to 65°C (with no condensation or icing) Altitude 2,000 m max. Recommended fuse T2A, 250 VAC, time-lag, low-breaking capacity Installation environment Installation Category II, Pollution Degree 2 (IEC 61010-1 compliant)
- Thermocouple/Platinum Resistance Thermometer (Universal inputs) Shaded settings are the default settings. The applicable standards for the input types are as follows: K, J, T, E, N, R, S, B: JIS C 1602-1995, IEC 60584-1 JPt100: JIS C 1604-1989, JIS C 1606-1989 L: Fe-CuNi, DIN 43710-1985 Pt100: JIS C 1604-1997, IEC 60751 U: Cu-CuNi, DIN 43710-1985 PL II: According to Platinel II el ectromotive force charts from BASF (previously Engelhard) W: W5Re/W26Re, ASTM E988-1990
- Analog input Sensor type Platinum resistance thermometer Thermocouple Infrared temperature sensor Sensor specifica- tion Pt100 JPt100 K J T E L U N R S B W PLII 10 to 70°C 60 to 120°C 115 to 165°C 140 to 260°C 2300 1800 1700 1600 1500 1400 1300 1200 1100 1000 900 800 700 600 500 400 300 200 100 -100 -200 2300 1800 1700 1700 1300 1300 1300 850 850 850 600 500.0 500.0 500.0 400.0 400 400.0 400 400.0 260 120 165 100.0 100.0 90 100 0.0 0.0 00 000000 -200 -199.9 199.9 -200 -200 -199.9 -200 -200 -199.9 -200 Set value 01234 56789 1 0 1 1 1 2 1 3 1 4 1 5 1 6 1 7 1 8 1 9 2 0 2 1 2 2 2 3 2 4 Input type Current Voltage Input specification 4 to 20 mA 0 to 20 mA 1 to 5 V 0 to 5 V 0 to 10 V Setting range Usable in the following ranges by scaling: -1999 to 9999, -199.9 to 999.9, -19.99 to 99.99 or -1.999 to 9.999 Set value 25 26 27 28 29 Temperature range (°C)
Each alarm can be independently set to one of the following 17 alarm types. The default is 2: Upper limit. (see note.) Auxiliary outputs are allocated for alarms. ON delays and OFF delays (0 to 999 s) can also be specified. Note: In the default settings for models with HB or HS alarms, alarm 1 is set to a heater alarm (HA) and the Alarm Type 1 parameter is not displayed. To use alarm 1, set the output assignment to alarm 1. Set value Alarm type Alarm output operation Description of functionWhen alarm value X is positive When alarm value X is negative Set the upward deviation in the set point for the alarm upper limit (H) and the lower deviation in the set point for the alarm lower limit (L). The alarm is ON when the PV is outside this deviation range. (default) Upper-limit Set the upward deviation in the set point by setting the alarm value (X). The alarm is ON when the PV is higher than the SP by the deviation or more. Set the downward deviation in the set point by setting the alarm value (X). The alarm is ON when the PV is lower than the SP by the deviation or more. range *1 Set the upward deviation in the set point for the alarm upper limit (H) and the lower deviation in the set point for the alarm lower limit (L). The alarm is ON when the PV is inside this de- viation range. with standby sequence *1 *4 A standby sequence is added to the upper- and lower-limit alarm (1). *6 sequence A standby sequence is added to the upper-limit alarm (2). *6 sequence A standby sequence is added to the lower-limit alarm (3). *6 The alarm will turn ON if the process value is larger than the alarm value (X) regardless of the set point. alarm value (X) regardless of the set point. it with standby sequence A standby sequence is added to the absolute-value upper- limit alarm (8). *6 with standby sequence A standby sequence is added to the absolute-value lower- limit alarm (9). *6 LBA (alarm 1 type only) -* 7 This alarm type turns ON the alarm when the set point (SP) is higher than the alarm value (X). This alarm type turns ON the alarm when the set point (SP) is lower than the alarm value (X). upper-limit alarm *9 Standard Control Standard Control This alarm type turns ON the alarm when the manipulated variable (MV) is higher than the alarm value (X).Heating/Cooling Control (Heating MV) Heating/Cooling Control (Heating MV) Always ON lower-limit alarm *9 Standard Control Standard Control This alarm type turns ON the alarm when the manipulated variable (MV) is lower than the alarm value (X).Heating/Cooling Control (Cooling MV) Heating/Cooling Control (Cooling MV) Always ON ON OFF PV SP LH SP XON OFF PV SP XON OFF PV SP XON OFF PV SP XON OFF PV SP LHON OFF PV SP LHON OFF PV SP XON OFF PV SP XON OFF PVSP XON OFF PV SP XON OFF PV0 XON OFF PV XON OFF PV0 XON OFF PV XON OFF PV0 XON OFF PV XON OFF PV0 XON OFF PV XON OFF PV XON OFF SP XON OFF SP0 XON OFF SP XON OFF SP XON OFF MV XON OFF MV XON OFF MV XON OFF MV XON OFF MV XON OFF MV
*1 With set values 1, 4 and 5, the upper and lower limit values can be set independently for each alarm type, and are expressed as “L” and “H.” *2 Set value: 1, Upper- and lower-limit alarm *3 Set value: 4, Upper- and lower-limit range *4 Set value: 5, Upper- and lower-limit with standby sequence For Upper- and Lower-Limit Alarm Described Above *2 Case 1 and 2 Always OFF when the upper-limit and lower-limit hysteresis overlaps. Case 3: Always OFF *5. Set value: 5, Upper- and lower-limit with standby sequence Always OFF when the upper-limit and lower-limit hysteresis overlaps. *6 Refer to the E5@C-T Digital Temperature Controllers Programmable Type User's Manual (Cat. No. H185) for information on the operation of the standby sequence. *7 Refer to the E5@C-T Digital Temperature Controllers Programmable Type User's Manual (Cat. No. H185) for information on the loop burnout alarm (LBA). *8 Refer to the E5@C-T Digital Temperature Controllers Programmable Type User's Manual (Cat. No. H185) for information on the PV change rate alarm. *9 When heating/cooling control is performed, the MV absolute upper limit alarm functions only for the heating operation and the MV absolute lower limit alarm functions only for the cooling operation. LH H<0, L>0 SP Case 1 LH H>0, L<0 SP Case 2 LH H<0, L<0 SP L H H<0, L>0 L H H>0, L<0 Case 3 (Always ON) LH H<0, L>0 SP Case 1 LH H>0, L<0 SP Case 2 L H H<0, L<0 SP L L H H<0, L>0 H H>0, L<0 Case 3 (Always OFF)
*1 The indication accuracy of K thermocouples in the −200 to 1300°C range, T and N thermocouples at a temperature of −100°C max., and U and L thermocouples at any temperatures is ±2°C ±1 digit max. The indication accuracy of the B thermocouple at a temperature of 400°C max. is not specified. The indication accuracy of B thermocouples at a temperature of 400 to 800°C is ±3°C max. The indication accuracy of the R and S thermocouples at a temperature of 200°C max. is ±3°C ±1 digit max. The indication accuracy of W thermocouples is (±0.3% of PV or ±3°C, whichever is greater) ±1 digit max. The indication accuracy of PL II thermocouples is (±0.3% of PV or ±2°C, whichever is greater) ±1 digit max. *2 Ambient temperature: −10°C to 23 °C to 55°C, Voltage range: −15% to 10% of rated voltage *3 K thermocouple at −100°C max.: ±10°C max. *4 The unit is determined by the setting of the Integral/Derivative Time Unit parameter. *5 External communications (RS-485) and USB-serial conversion cable communications can be used at the same time. Indication accuracy (at the ambient temperature of 23°C) Thermocouple: ( ±0.3% of indication value or ±1°C, whichever is greater) ±1 digit max. *1 Platinum resistance thermometer: (±0.2% of indication value or ±0.8°C, whichever is greater) ±1 digit max. Analog input: ±0.2% FS ±1 digit max. CT input: ±5% FS ±1 digit max. Transfer output accuracy ±0.3% FS max. Influence of temperature *2 Thermocouple input (R, S, B, W, PL II): (±1% of indication value or ±10°C, whichever is greater) ±1 digit max. Other thermocouple input: (±1% of indication value or ±4°C, whichever is greater) ±1 digit max. *3 Platinum resistance thermometer: (±1% of indication value or ±2°C, whichever is greater) ±1 digit max. Analog input: ±1%FS ±1 digit max. CT input: ±5% FS ±1 digit max. Influence of voltage *2 Input sampling period 50 ms Hysteresis Temperature input: 0.1 to 999.9°C or °F (in units of 0.1°C or °F) Analog input: 0.01% to 99.99% FS (in units of 0.01% FS) Proportional band (P) Temperature input: 0.1 to 999.9°C or °F (in units of 0.1°C or °F) Analog input: 0.1% to 999.9% FS (in units of 0.1% FS) Integral time (I) 0 to 9999 s (in units of 1 s), 0.0 to 999.9 s (in units of 0.1 s) *4 Derivative time (D) 0 to 9999 s (in units of 1 s), 0.0 to 999.9 s (in units of 0.1 s) *4 Proportional band (P) for cooling Temperature input: 0.1 to 999.9°C or °F (in units of 0.1°C or °F) Analog input: 0.1% to 999.9% FS (in units of 0.1% FS) Integral time (I) for cooling 0 to 9999 s (in units of 1 s), 0.0 to 999.9 s (in units of 0.1 s) *4 Derivative time (D) for cooling 0 to 9999 s (in units of 1 s), 0.0 to 999.9 s (in units of 0.1 s) *4 Control period 0.1, 0.2, 0.5, 1 to 99 s (in units of 1 s) Manual reset value 0.0 to 100.0% (in units of 0.1%) Alarm setting range -1999 to 9999 (decimal point position depends on input type) Influence of signal source resistance Thermocouple: 0.1°C/Ω max. (100 Ωmax.) Platinum resistance thermometer: 0.1°C/Ω max. (10 Ω max.) Insulation resistance 20 MΩ min. (at 500 VDC) Dielectric strength 3,000 VAC, 50/60 Hz for 1 min between terminals of different charge Vibration Malfunction 10 to 55 Hz, 20 m/s2 for 10 min each in X, Y, and Z directions Resistance 10 to 55 Hz, 20 m/s2 for 2 hrs each in X, Y, and Z directions Shock Malfunction 100 m/s2, 3 times each in X, Y, and Z directions Resistance 300 m/s2, 3 times each in X, Y, and Z directions Weight Controller: Approx. 120 g, Adapter: Approx. 10 g Degree of protection Front panel: IP66, Rear case: IP20, Terminals: IP00 Memory protection Non-volatile memory (number of writes: 1,000,000 times) Setup Tool CX-Thermo version 4.61 or higher Setup Tool port E5CC-T top panel: An E58-CIFQ2 USB-Serial Conver sion Cable is used to connect to a USB port on the computer. *5 Standards Approved standards UL 61010-1, Korean Radio Waves Act (Act 10564) Conformed standards EN 61010-1 (IEC 61010-1): Pollution Degree 2, overvoltage category II EMC EMI: EN61326 Radiated Interference Electromagnetic Field Strength: EN 55011 Group 1, class A Noise Terminal Voltage: EN 55011 Group 1, class A EMS: EN 61326 ESD Immunity: EN 61000-4-2 Electromagnetic Field Immunity: EN 61000-4-3 Burst Noise Immunity: EN 61000-4-4 Conducted Disturbance Immunity: EN 61000-4-6 Surge Immunity: EN 61000-4-5 Voltage Dip/Interrupting Immunity: EN 61000-4-11
Number of programs (patterns) 8 Number of segments (steps) 32 Segment setting method Time setting (Segment set with set point and time.) Slope setting (Segment set with segment type, set point, slope, and time.) Segment times 0 h 0 min to 99 h 59 min 0 min 0 s to 99 min 59 s Alarm setting Set separately for each program. Reset operation Select either stopping control or fixed SP operation. Startup operation Select continuing, resetting, manual operation, or run mode. PID sets Number of sets 8 Setting method Set separately for each program (automatic PID group selection also supported). Alarm SP function Select from ramp SP and target SP. Program status control Segment operation Advance, segment jump, hold, and wait Program operation Program repetitions and program links Wait operation Wait method Waiting at segment ends Wait width setting Same wait width setting for all programs Time signals Number of outputs 2 Number of ON/OFF Operations 1 each per output Setting method Set separately for each program. Program status output Program end output (pulse width can be set), run output, stage output Program startup operation PV start Select from segment 1 set point, slope-priority PV start Standby 0 h 0 min to 99 h 59 min 0 day 0 h to 99 day 23h Operation end operation Select from resetting, continuing control at final set point, and fixed SP control. Program SP shift Same program SP shift for all programs
USB-Serial Conversion Cable Windows is a registered trademark of Microsoft Corporation in the United States and or other countries. * Use a high-power port for the USB port. Note: A driver must be installed on the computer. Refer to the Instruction Manual included with the Cable for the installation procedure. Communications Specifications * The baud rate, data bit length, stop bit length, and vertical parity can be individually set using the Communications Setting Level. Communications Functions MELSEC is a registered trademark of Mitsubishi Electric Corporation. *1 Both the programless communications and the component communications support the copying. Current Transformer (Order Separately) Ratings Heater Burnout Alarms and SSR Failure Alarms *1 For heater burnout alarms, the heater current will be measured when the control output is ON, and the output will turn ON if the heater current is lower than the set value (i.e., heater burnout detection current value). *2 For SSR failure alarms, the heater current will be measured when the control output is OFF, and the output will turn ON if the heater current is higher than the set value (i.e., SSR failure detection current value). *3 The value is 30 ms for a control period of 0.1 s or 0.2 s. *4 The value is 35 ms for a control period of 0.1 s or 0.2 s. Electrical Life Expectancy Curve for Relays (Reference Values) Applicable OS Windows XP, Vista, or 7 Applicable software CX-Thermo version 4.61 or higher Applicable models E5@C-T Series, E5@C Series, and E5CB Series USB interface standard Conforms to USB Specification 2.0. DTE speed 38400 bps Connector specifications Computer: USB (type A plug) Digital Temperature Controller: Special serial connector Power supply Bus power (Supplied from USB host controller.)* Power supply voltage 5 VDC Current consumption 450 mA max. Output voltage 4.7±0.2 VDC (Supplied from USB-Serial Conversion Cable to the Digital Temperature Controller.) Output current 250 mA max. (Supplied from USB-Serial Conversion Cable to the Digital Temperature Controller.) Ambient operating temperature 0 to 55°C (with no condensation or icing) Ambient operating humidity 10% to 80% Storage temperature -20 to 60°C (with no condensation or icing) Storage humidity 10% to 80% Altitude 2,000 m max. Weight Approx. 120 g Transmission line connection method RS-485: Multidrop Communications RS-485 (two-wire, half duplex) Synchronization method Start-stop synchronization Protocol CompoWay/F, or Modbus Baud rate* 9600, 19200, 38400, or 57600 bps Transmission code ASCII Data bit length* 7 or 8 bits Stop bit length* 1 or 2 bits Error detection Vertical parity (none, even, odd) Block check character (BCC) with CompoWay/F or CRC-16 Modbus Flow control None Interface RS-485 Retry function None Communications buffer 217 bytes Communications response wait time 0 to 99 ms Default: 20 ms Programless communications*1 You can use the memory in the PLC to read and write E5@C-T parameters, start and reset opera- tion, etc. The E5@C-T automatically performs communications with PLCs. No communications programming is required. Number of connected Digital Temperature Con- trollers: 32 max. Applicable PLCs OMRON PLCs CS Series, CJ Series, or CP Series Mitsubishi Electric PLCs MELSEC Q Series, L Series Component Communications When Digital Temperature Controllers are con- nected, set points and RUN/STOP commands can be sent from the Digital Temperature Control- ler that is set as the master to the Digital Temper- ature Controllers that are set as slaves. Slope and offsets can be set for the set point. Number of connected Digital Temperature Con- trollers: 32 max. (including master) Copying*1 When Digital Temperature Controllers are con- nected, the parameters can be copied from the Digital Temperature Controller that is set as the master to the Digital Temperature Controllers that are set as slaves. Dielectric strength 1,000 VAC for 1 min Vibration resistance 50 Hz, 98 m/s2 Weight E54-CT1: Approx. 11.5 g, E54-CT3: Approx. 50 g Accessories (E54-CT3 only) Armatures (2) Plugs (2) CT input (for heater current detection) Models with detection for single-phase heaters: One input Models with detection for singlephase or three-phase heaters: Two inputs Maximum heater current 50 A AC Input current indication accuracy ±5% FS ±1 digit max. Heater burnout alarm setting range 0.1 to 49.9 A (in units of 0.1 A) Minimum detection ON time: 100 ms *3 SSR failure alarm setting range *2 0.1 to 49.9 A (in units of 0.1 A) Minimum detection OFF time: 100 ms *4 500 300 100 01 2 3 4 56 Switching current (A) E5CC-T (resistive load) cosφ = 1 Life (× 104 operations)
Note: 1. The application of the terminals depends on the model. 2. Do not wire the terminals that are shown with a gray background. 3. When complying with EMC standards, the cable that connects the sensor must be 30 m or less. If the cable length exceeds 30 m, compliance with EMC standards will not be possible. 4. Connect M3 crimped terminals. Isolation/Insulation Block Diagrams Models with 3 Auxiliary Outputs 18 12 Pt mA− (5) Sensor (Temperature/Analog) Input V − 5 V 6+ TC I (no polarity) (3) Input Power Supply 100 to 240 VAC 24 VAC/DC (2) Auxiliary Outputs Auxiliary outputs 1, 2, and 3 Auxiliary output 2 Auxiliary output 3 Auxiliary output 1 005 Event inputs 1 to 4 004 Communications (RS-485) and event inputs 3 and 4 006 Event inputs 1 and 2, and transfer output (6) Options 001 Event inputs 1 and 2, and CT1 V I 003 Communications (RS-485), CT1, and CT2 EV1 EV2 EV1 EV2 EV3 EV 4 EV3 EV 4 B(+) A(−) RS-485 B(+) A(−) RS-485 CT2 COM CT1 Models with 2 − (1) Control outputs 1, 2 Models with 1 Voltage Output (for Driving SSR) RX QX CX QQ CQR OUT1 OUT1 OUT1 OUT1 OUT2 A B B Voltage output (for driving SSR)
250 VAC: 2 A
(resistive load) 3 + 1 + 2 - OUT1 C OUT2 Q CQ E5CC M EV1 EV2 CT1 Transfer output Control output 2 Auxiliary outputs 3 5 Terminal type The E5CC-T is set for a K-type thermocouple (input type = 5) by default. An input error (s.err) will occur if the input type setting does not agree with the temperature sensor. Check the input type. Relay output
250 VAC, 3 A
(resistive load) Voltage output (for driving SSR) Load: 500 Ω max. Control output 1 Models with 1 Linear Current Output Models with 2 Voltage Outputs (for Driving SSR) Models with 2 Outputs: Linear Current Output and Voltage (for Driving SSR) T Models with 3 auxiliary outputs: Sensor input and CT inputs Communications and event inputs Voltage output (for driving SSR), linear current output, and transfer output Relay output Auxiliary outputs 1, 2, 3 : Reinforced insulation : Functional isolation Power supply Note: Auxiliary outputs 1 to 3 are not insulated.
Dimensions (Unit: mm) Controllers Operation indicators Temperature unit Front panel No. 1 display No. 2 display PV or specified monitor/setting parameter SP or specified monitor/parameter value Top View of E5CC-T Top-panel Setup Tool port Press O Key once to go to Program Setting Level. Press O Key for at least 3 seconds to go to Initial Setting Level. Use the M Key to change to another parameter. Press M and D Keys simultaneously for at least 1 second to switch between run and reset status. Use S Key to change the digit (default setting). Use the UD Keys to set the parameter. Press U Key for at least 1 second when Process value/Set point parameter are displayed in Program SP Mode to go to Display Segment Selection parameter in Program Setting Level. E5CC-T 45+0.6 45+0.6 45+0.6 60 min. (48 × number of units - 2.5)+1.0 Panel Cutout Mounted Separately Group Mounted Group mounting does not allow waterproofing. 48 × 48 48 × 48 (64) 604 Mounting Adapter (Accessory) Waterproof Packing (Accessory) E5CC-T Recommended panel thickness is 1 to 5 mm. Group mounting is not possible in the vertical direction. (Maintain the specified mounting space between Controllers.) To mount the Controller so that it is waterproof, insert the waterproof packing onto the Controller. When two or more Controllers are mounted, make sure that the surrounding temperature does not exceed the allowable operating temperature specified in the specifications. Use a control panel thickness of 1 to 3 mm if the Y92A-48N and a USB-Serial Conversion Cable are used together. The Setup Tool port is on the top of the Temperature Controller. It is used to connect the Temperature Controller to the computer to use the Setup Tool. The E58-CIFQ2 USB-Serial Conversion Cable is required to make the connection. Refer to the instructions that are provided with the USB-Serial Conversion Cable for the connection procedure. Note: Do not leave the USB-Serial Conversion Cable connected when you use the Temperature Controller.
Accessories (Order Separately) (2110) 250 263 1510 USB connector (type A plug) Serial connector LED (SD) LED (PWR) LED (RD)
- USB-Serial Conversion Cable E58-CIFQ2 48.8 9.1 44.8 2 3.8 Terminal Cover (E53-COV23)
- Terminal Covers E53-COV17
- Terminal Covers E53-COV23 (Three Covers provided.)
- Waterproof Packing Y92S-P8 (for DIN 48 × 48) The Waterproof Packing is provided with the Temperature Controller. Order the Waterproof Packing separately if it becomes lost or damaged. The Waterproof Packing can be used to achieve an IP66 degree of protection. (Deterioration, shrinking, or hardening of the waterproof packing may occur depending on the operating environment. Therefore, periodic replacement is recommended to ensure the level of waterproofing specified in IP66. The time for periodic replacement depends on the operating environment. Be sure to confirm this point at your site. Consider three years as a rough standard.) The Waterproof Packing does not need to be attached if a waterproof structure is not required.
- Current Transformers E54-CT3 Accessories A r m a t u r e 15 5.8 dia. 25 3 10.5 2.8 7.5 Two, 3.5 dia. 40 × 40 12 dia. 2.36 dia. Two, M3 (depth: 4) Approx. 3 dia. (22) Approx. 6 dia. Plug Armature Lead E54-CT1 E54-CT3 Connection Example P l u g Thru-current (Io) vs. Output Voltage (Eo) (Reference Values) E54-CT1 Maximum continuous heater current: 50 A (50/60 Hz) Number of windings: 400 ±2 Winding resistance: 18 ±2 Ω Thru-current (Io) A (r.m.s.) 1 10 100mA 1 10 100 1,000A 100V Frequency: 50 Hz Distortion factor 10% 100Ω RL=10Ω ∞10 100mV 100μV 1kΩ Output voltage (Eo) V (r.m.s.) Thru-current (Io) vs. Output Voltage (Eo) (Reference Values) E54-CT3 Maximum continuous heater current: 120 A (50/60 Hz) (Maximum continuous heater current for an OMRON Digital Temperature Controller is 50 A.) Number of windings: 400 ±2 Winding resistance: 8 ±0.8 Ω Thru-current (Io) A (r.m.s.) 1 10 100mA 1 10 100 1,000A 100V Frequency: 50 Hz Distortion factor 10% 1kΩ 100Ω 50Ω RL=10Ω 500Ω ∞10 100mV 100μV Output voltage (Eo) V (r.m.s.)
- Adapter
- DIN Track Mounting Adapter Fixture (Accessory) 69.6 to 77.6 87 67 × 67 72 × 72 764.7 72 × 72 48 × 48 Panel (1 to 8 mm) Mounting Adapter Y92F-30 (Accessory) 62.8 To back of the E5CC-T 2.2 4.7 Y92F-45 Mounted to E5CC-T Note: 1. Use this Adapter when the Front Panel has already been prepared for the E5B@. 2. Only black is available. 3. You cannot use the E58-CIFQ2 USB-Serial Conversion Cable if you use the Y92F-45 Adapter. To use the USB-Serial Conversion Cable to make the settings, do so before you mount the Temperature Controller in the panel. 3.5 80.5 Mounted to E5CC-T Note: This Adapter cannot be used together with the Terminal Cover. Remove the Terminal Cover to use the Adapter. Y92F-52 This Adapter is used to mount the E5CC-T to a DIN Track. If you use the Adapter, there is no need for a plate to mount in the panel or to drill mounting holes in the panel.
- Watertight Cover Y92A-48N
- Mounting Adapter Y92F-49
- Protective Cover ● Protective Cover Y92A-48H 67.6 21.9 14 (2) 79.287.7 The Mounting Adapter is provided with the Temperature Controller. Order this Adapter separately if it becomes lost or damaged. This Protective Cover is soft type. It is able to operate the controller with using this cover. Note: This Protective Cover cannot be used if the Waterproof Packing is installed. Y92A-48D This Protective Cover is hard type. Please use it for the mis-operation prevention etc.
Programmable Temperature Controller (Digital Controller) E5EC-T/E5AC-T (48 × 96 mm/96 × 96 mm) Programmable Controllers Join the E5C Series! Program up to 256 segments can handle a wide variety of applications. Set up to 8 Programs (Patterns) with 32 Segments (Steps) Each A white LCD PV display with a height of approx. 18 mm for the E5EC- T and 25 mm for the E5AC-T improves visibility. Tool ports are provided both on the top panel and the front panel. Set up the Controller without wiring the power supply by connecting to the computer with a Communications Conversion Cable (sold separately). Setup is easy with the CX-Thermo (sold separately). High-speed sampling at 50 ms. Models are available with up to 4 auxiliary outputs, up to 6 event inputs, and a transfer output to cover a wide range of applications. Short body with depth of only 60 mm. Easy connections to a PLC with programless communications. Use component communications to link Temperature Controllers to each other. The new position-proportional control models allow you to control valves as well. (The position-proportional control models are scheduled to be released in May, 2014.) Main I/O Functions 48 × 96 mm E5EC-T 96 × 96 mm E5AC-T Refer to your OMRON website for the most recent information on applicable safety standards. 4-digit displays Sensor Input Indication Accuracy
- Thermocouple input: ±0.3% of PV
- Pt input: ±0.2% of PV
- Analog input: ±0.2% of FS Sampling Period
- 50 ms Event Inputs
- None
- 2
- 4
- 6 Control Output 1
- Relay output Voltage output (for driving SSR)
- Linear current output Control Output 2
- Voltage output (for driving SSR)
- Relay output
- Linear current output Auxiliary Outputs
- 4 Transfer Output
- None
- 1
- PF (shift) Key
- Setup Tool port on front panel
- Temperature status display Operating and editting the program
- Independent heating and cooling PID control
- Parameter mask setting
- Display brightness setting Three-level Display Simultaneous display of the PV, SP , Program No., Segment No., etc. Serial Communications
- None
- RS-485 Universal input
- Thermocouple
- Pt
- Analog current/voltage E5EC-T E5AC-T This datasheet is provided as a guideline for selecting products. Be sure to refer to the following manuals for application precautions and other information required for operation before attempting to use the product. E5@C-T Digital Temperature Controllers Programmable Type User’s Manual (Cat. No. H185) E5@C-T Digital Temperature Controllers Programmable Type Communications Manual (Cat. No. H186) Refer to Safety Precautions on page 104.
Model Number Legend and Standard Models Model Number Legend
- Models with Screw Terminals *1. The options that can be selected depend on the type of control output. *2. The linear current output cannot be used as a transfer output. *3. Models with Position-proportional Control are scheduled for release in May 2014. Heating and Cooling Control
- Using Heating and Cooling Control A Control Output Assignment If there is no control output 2, an auxiliary output is used as the cooling control output. If there is a control output 2, the two control outputs are used for heating and cooling. (It does not matter which output is used for heating and which output is used for cooling.) B Control If PID control is used, you can set PID control separately for heating and cooling. This allows you to handle control systems with different heating and cooling response characteristics. Model A B C D E F MeaningControl outputs 1 and 2 No. of auxil- iary out- puts Power supply voltage Terminal type Input type Options E5EC-T 48 × 96 mm Programmable Type E5AC-T 96 × 96 mm Programmable Type Control output 1 Control output 2 RX Relay output None QX Voltage output (for driving SSR) None *2 CX Linear current output None QQ Voltage output (for driving SSR) Voltage output (for driving SSR) QR Voltage output (for driving SSR) Relay output RR Relay output Relay output *2 CC Linear current output Linear current output *2 CQ Linear current output Voltage output (for driving SSR) *3 PR Position-proportional relay out- put Position-proportional re- lay output 4 4 (auxiliary outputs 1 and 2 with same common and auxiliary outputs 3 and 4 with same common) A 100 to 240 VAC D 24 VAC/DC
Control outputs 1 and 2 M Universal input Option selection conditions For RX, QX, QQ, QR, RR, or CQ For CX or CC For PR HB alarm and HS alarm Communications Event inputs Transfer output Selectable Selectable Selectable 000 --- --- --- --- Selectable Selectable 004 --- RS-485 2 --- Selectable 005 --- --- 4 --- Selectable 008 1 RS-485 2 --- Selectable 010 1 --- 4 --- Selectable 019 1 --- 6 Provided. Selectable 021 --- --- 6 Provided. Selectable Selectable 022 --- RS-485 4 Provided.
Optional Products (Order Separately) USB-Serial Conversion Cable Communications Conversion Cable Note: Always use this product together with the E58-CIFQ2. This Cable is used to connect to the front-panel Setup Tool port. Terminal Covers Note: The Terminal Covers E53-COV24 are provided with the Digital Temperature Controller. Waterproof Packing Note: This Waterproof Packing is provided with the Digital Temperature Controller. Waterproof Cover Front Port Cover Note: This Front Port Cover is provided with the Digital Temperature Controller. Mounting Adapter Note: This Mounting Adapter is provided with the Digital Temperature Controller. Current Transformers (CTs) CX-Thermo Support Software Note: CX-Thermo version 4.61 or higher is required for the E5EC-T/ E5AC-T. For the system requirements for the CX-Thermo, refer to information on the EST2-2C-MV4 on the OMRON website (www.ia.omron.com). Model E58-CIFQ2 Model E58-CIFQ2-E Model E53-COV24 (3pcs) Applicable Controller Model E5EC-T Y92S-P9 E5AC-T Y92S-P10 Applicable Controller Model E5EC-T Y92A-49N E5AC-T Y92A-96N Model Y92S-P7 Model Y92F-51 (2pcs) Hole diameter Model 5.8 mm E54-CT1 12.0 mm E54-CT3 Model EST2-2C-MV4
Power supply voltage A in model number: 100 to 240 VAC, 50/60 Hz D in model number: 24 VAC, 50/60 Hz; 24 VDC Operating voltage range 85% to 110% of rated supply voltage Sensor input Temperature input Thermocouple: K, J, T, E, L, U, N, R, S, B, W, or PL II Platinum resistance thermometer: Pt100 or JPt100 Infrared temperature sensor (ES1B): 10 to 70°C, 60 to 120°C, 115 to 165°C, or 140 to 260°C Analog input Current input: 4 to 20 mA or 0 to 20 mA Voltage input: 1 to 5 V, 0 to 5 V, or 0 to 10 V Input impedance Current input: 150 Ω max., Voltage input: 1 MΩ min. (Use a 1:1 connection when connecting the ES2-HB/THB.) Control method 2-PID control (with auto-tuning) or ON/OFF control Control output Relay output SPST-NO, 250 VAC, 5 A (resistive load), electrical life: 100,000 operations, minimum applicable load: 5 V, 10 mA (reference value) Voltage output (for driving SSR) Output voltage: 12 VDC ±20% (PNP), max. load current: 40 mA, with short-circuit protection circuit (The maximum load current is 21 mA for models with two control outputs.) Linear current output 4 to 20 mA DC/0 to 20 mA DC, load: 500 Ω max., resolution: approx. 10,000 Auxiliary output Number of outputs 4 Output specifications SPST-NO. relay outputs, 250 VAC, Models with 4 outputs: 2 A (resistive load), Electrical life: 100,000 operations, Minimum applicable load: 10 mA at 5 V (reference value) Event input Number of inputs 2, 4 or 6 (depends on model) External contact input specifications Contact input: ON: 1 kΩ max., OFF: 100 kΩ min. Non-contact input: ON: Residual voltage: 1.5 V max., OFF: Leakage current: 0.1 mA max. Current flow: Approx. 7 mA per contact Transfer output Number of outputs 1 (only on models with a transfer output) Output specifications Current output: 4 to 20 mA DC, Load: 500 Ω max., Resolution: Approx. 10,000 Linear voltage output: 1 to 5 VDC, load: 1 kΩ min., Resolution: Approx. 10,000 Potentiometer input 100 Ω to 10 kΩ Setting method Digital setting using front panel keys Indication method 11-segment digital display and individual indicators Character height: E5EC-T: PV: 18.0 mm, SV: 11.0 mm, MV: 7.8 mm E5AC-T: PV: 25.0 mm, SV: 15.0 mm, MV: 9.5 mm Three displays. Contents: PV, SP, program No. and segment No., remaining segment time, or MV (valve opening) Numbers of digits: 4 digits Bank switching None Other functions Manual output, heating/cooling control, loop burnout alarm, other alarm functions, heater burnout (HB) alarm (including SSR failure (HS) alarm), 40% AT, 100% AT, MV limiter, input digital filter, robust tun- ing, PV input shift, protection functions, extraction of square root, MV change rate limit, logic opera- tions, temperature status display, moving average of input value, and display brightness setting Ambient operating temperature −10 to 55°C (with no condensation or icing), For 3-year warranty: −10 to 50°C with standard mounting (with no condensation or icing) Ambient operating humidity 25% to 85% Storage temperature −25 to 65°C (with no condensation or icing) Altitude 2,000 m max. Recommended fuse T2A, 250 VAC, time-lag, low-breaking capacity Installation environment Installation Category II, Pollution Degree 2 (IEC 61010-1 compliant)
- Thermocouple/Platinum Resistance Thermometer (Universal inputs) Shaded settings are the default settings. The applicable standards for the input types are as follows: K, J, T, E, N, R, S, B: JIS C 1602-1995, IEC 60584-1 JPt100: JIS C 1604-1989, JIS C 1606-1989 L: Fe-CuNi, DIN 43710-1985 Pt100: JIS C 1604-1997, IEC 60751 U: Cu-CuNi, DIN 43710-1985 PL II: According to Platinel II el ectromotive force charts from BASF (previously Engelhard) W: W5Re/W26Re, ASTM E988-1990
- Analog input Sensor type Platinum resistance thermometer Thermocouple Infrared temperature sensor Sensor specifica- tion Pt100 JPt100 K J T E L U N R S B W PLII 10 to 70°C 60 to 120°C 115 to 165°C 140 to 260°C 2300 1800 1700 1600 1500 1400 1300 1200 1100 1000 900 800 700 600 500 400 300 200 100 -100 -200 2300 1800 1700 1700 1300 1300 1300 850 850 850 600 500.0 500.0 500.0 400.0 400 400.0 400 400.0 260 120 165 100.0 100.0 90 100 0.0 0.0 00 000000 -200 -199.9 199.9 -200 -200 -199.9 -200 -200 -199.9 -200 Set value 01234 56789 1 0 1 1 1 2 1 3 1 4 1 5 1 6 1 7 1 8 1 9 2 0 2 1 2 2 2 3 2 4 Input type Current Voltage Input specification 4 to 20 mA 0 to 20 mA 1 to 5 V 0 to 5 V 0 to 10 V Setting range Usable in the following ranges by scaling: -1999 to 9999, -199.9 to 999.9, -19.99 to 99.99 or -1.999 to 9.999 Set value 25 26 27 28 29 Temperature range (°C)
Each alarm can be independently set to one of the following 17 alarm types. The default is 2: Upper limit. (see note.) Auxiliary outputs are allocated for alarms. ON delays and OFF delays (0 to 999 s) can also be specified. Note: In the default settings for models with HB or HS alarms, alarm 1 is set to a heater alarm (HA) and the Alarm Type 1 parameter is not displayed. To use alarm 1, set the output assignment to alarm 1. Set value Alarm type Alarm output operation Description of functionWhen alarm value X is positive When alarm value X is negative Set the upward deviation in the set point for the alarm upper limit (H) and the lower deviation in the set point for the alarm lower limit (L). The alarm is ON when the PV is outside this deviation range. (default) Upper-limit Set the upward deviation in the set point by setting the alarm value (X). The alarm is ON when the PV is higher than the SP by the deviation or more. Set the downward deviation in the set point by setting the alarm value (X). The alarm is ON when the PV is lower than the SP by the deviation or more. range *1 Set the upward deviation in the set point for the alarm upper limit (H) and the lower deviation in the set point for the alarm lower limit (L). The alarm is ON when the PV is inside this de- viation range. with standby sequence *1 *4 A standby sequence is added to the upper- and lower-limit alarm (1). *6 sequence A standby sequence is added to the upper-limit alarm (2). *6 sequence A standby sequence is added to the lower-limit alarm (3). *6 The alarm will turn ON if the process value is larger than the alarm value (X) regardless of the set point. alarm value (X) regardless of the set point. it with standby sequence A standby sequence is added to the absolute-value upper- limit alarm (8). *6 with standby sequence A standby sequence is added to the absolute-value lower- limit alarm (9). *6 LBA (alarm 1 type only) -* 7 This alarm type turns ON the alarm when the set point (SP) is higher than the alarm value (X). This alarm type turns ON the alarm when the set point (SP) is lower than the alarm value (X). upper-limit alarm *9 Standard Control Standard Control This alarm type turns ON the alarm when the manipulated variable (MV) is higher than the alarm value (X).Heating/Cooling Control (Heating MV) Heating/Cooling Control (Heating MV) Always ON lower-limit alarm *9 Standard Control Standard Control This alarm type turns ON the alarm when the manipulated variable (MV) is lower than the alarm value (X).Heating/Cooling Control (Cooling MV) Heating/Cooling Control (Cooling MV) Always ON ON OFF PV SP LH SP XON OFF PV SP XON OFF PV SP XON OFF PV SP XON OFF PV SP LHON OFF PV SP LHON OFF PV SP XON OFF PV SP XON OFF PVSP XON OFF PV SP XON OFF PV0 XON OFF PV XON OFF PV0 XON OFF PV XON OFF PV0 XON OFF PV XON OFF PV0 XON OFF PV XON OFF PV XON OFF SP XON OFF SP0 XON OFF SP XON OFF SP XON OFF MV XON OFF MV XON OFF MV XON OFF MV XON OFF MV XON OFF MV
*1 With set values 1, 4 and 5, the upper and lower limit values can be set independently for each alarm type, and are expressed as “L” and “H.” *2 Set value: 1, Upper- and lower-limit alarm *3 Set value: 4, Upper- and lower-limit range *4 Set value: 5, Upper- and lower-limit with standby sequence For Upper- and Lower-Limit Alarm Described Above *2 Case 1 and 2 Always OFF when the upper-limit and lower-limit hysteresis overlaps. Case 3: Always OFF *5. Set value: 5, Upper- and lower-limit with standby sequence Always OFF when the upper-limit and lower-limit hysteresis overlaps. *6 Refer to the E5@C-T Digital Temperature Controllers Programmable Type User's Manual (Cat. No. H185) for information on the operation of the standby sequence. *7 Refer to the E5@C-T Digital Temperature Controllers Programmable Type User's Manual (Cat. No. H185) for information on the loop burnout alarm (LBA). This setting cannot be used with a position-proportional model. *8 Refer to the E5@C-T Digital Temperature Controllers Programmable Type User's Manual (Cat. No. H185) for information on the PV change rate alarm. *9 When heating/cooling control is performed, the MV absolute upper limit alarm functions only for the heating operation and the MV absolute lower limit alarm functions only for the cooling operation. LH H<0, L>0 SP Case 1 LH H>0, L<0 SP Case 2 LH H<0, L<0 SP L H H<0, L>0 L H H>0, L<0 Case 3 (Always ON) LH H<0, L>0 SP Case 1 LH H>0, L<0 SP Case 2 L H H<0, L<0 SP L L H H<0, L>0 H H>0, L<0 Case 3 (Always OFF)
*1 The indication accuracy of K thermocouples in the -200 to 1300°C range, T and N thermocouples at a temperature of -100°C max. , and U and L thermocouples at any temperatures is ±2°C ±1 digit max. The indication accuracy of the B thermocouple at a temperature of 400°C max. is not specified. The indication accuracy of B thermocouples at a temperature of 400 to 800°C is ±3°C max. The indication accuracy of the R and S thermocouples at a temperature of 200°C max. is ±3°C ±1 digit max. The indication accuracy of W thermocouples is (±0.3% of PV or ±3°C, whichever is greater) ±1 digit max. The indication accuracy of PL II thermocouples is (±0.3% of PV or ±2°C, whichever is greater) ±1 digit max. *2 Ambient temperature: -10°C to 23°C to 55°C, Voltage range: -15% to 10% of rated voltage *3 K thermocouple at -100°C max.: ±10°C max. *4 The unit is determined by the setting of th e Integral/Derivative Time Unit parameter. *5 External communications (RS-485) and USB-serial conver sion cable communications can be used at the same time. Indication accuracy (at the ambient temperature of 23°C) Thermocouple: (±0.3% of indication value or ±1°C, whichever is greater) ±1 digit max. *1 Platinum resistance thermometer: (±0.2% of indication value or ±0.8°C, whichever is greater) ±1 digit max. Analog input: ±0.2% FS ±1 digit max. CT input: ±5% FS ±1 digit max. Potentiometer input: ±5% FS ±1 digit max. Transfer output accuracy ±0.3% FS max. Influence of temperature *2 Thermocouple input (R, S, B, W, PL II): (±1% of indication value or ±10°C, whichever is greater) ±1 digit max. Other thermocouple input: (±1% of indication value or ±4°C, whichever is greater) ±1 digit max. *3 Platinum resistance thermometer: (±1% of indication value or ±2°C, whichever is greater) ±1 digit max. Analog input: ±1%FS ±1 digit max. CT input: ±5% FS ±1 digit max. Influence of voltage *2 Input sampling period 50ms Hysteresis Temperature input: 0.1 to 999.9°C or °F (in units of 0.1°C or°F) Analog input: 0.01% to 99.99% FS (in units of 0.01% FS) Proportional band (P) Temperature input: 0.1 to 999.9°C or °F (in units of 0.1°C or °F) Analog input: 0.1 to 999.9% FS (in units of 0.1% FS) Integral time (I) Standard, heating/cooling, or Position-proportional (Close): 0 to 9999 s (in units of 1 s), 0.0 to 999.9 s (in units of 0.1 s) Position-proportional (Floating): 1 to 9999 s (in units of 1 s), 0.1 to 999.9 s (in units of 0.1 s)*4 Derivative time (D) 0 to 9999 s (in units of 1 s), 0.0 to 999.9 s (in units of 0.1 s) *4 Proportional band (P) for cooling Temperature input: 0.1 to 999.9°C or °F (in units of 0.1°C or °F) Analog input: 0.1 to 999.9% FS (in units of 0.1% FS) Integral time (I) for cooling 0 to 9999 s (in units of 1 s), 0.0 to 999.9 s (in units of 0.1 s) *4 Derivative time (D) for cooling 0 to 9999 s (in units of 1 s), 0.0 to 999.9 s (in units of 0.1 s) *4 Control period 0.1, 0.2, 0.5, 1 to 99 s (in units of 1 s) Manual reset value 0.0 to 100.0% (in units of 0.1%) Alarm setting range -1999 to 9999 (decimal point position depends on input type) Influence of signal source resis- tance Thermocouple: 0.1°C/Ω max. (100 Ω max.) Platinum resistance thermometer: 0.1°C/Ω max. (10 Ω max.) Insulation resistance 20 MΩ min. (at 500 VDC) Dielectric strength 3,000 VAC, 50/60 Hz for 1 min between terminals of different charge Vibration Malfunction 10 to 55 Hz, 20 m/s2 for 10 min each in X, Y, and Z directions Resistance 10 to 55 Hz, 20 m/s2 for 2 hrs each in X, Y, and Z directions Shock Malfunction 100 m/s2, 3 times each in X, Y, and Z directions Resistance 300 m/s2, 3 times each in X, Y, and Z directions Weight E5EC-T Controller: Approx. 210 g, Adapter: Approx. 4 g × 2 E5AC-T Controller: Approx. 250 g, Adapter: Approx. 4 g × 2 Degree of protection Front panel: IP66, Rear case: IP20, Terminals: IP00 Memory protection Non-volatile memory (number of writes: 1,000,000 times) Setup Tool CX-Thermo version 4.61 or higher Setup Tool port E5EC-T/E5AC-T top panel: An E58-CI FQ2 USB-Serial Conversion Cable is used to connect to a USB port on the computer.*5 E5EC-T/E5AC-T front panel: An E58-CIFQ2 USB-Serial Conversion Cable and E58-CIFQ2-E Conver- sion Cable are used together to connect to a USB port on the computer.*5 Standards Approved standards UL 61010-1, Korean Radio Waves Act (Act 10564) Conformed standards EN 61010-1 (IEC 61010-1): Pollution Degree 2, overvoltage category II EMC EMI EN61326 Radiated Interference Electromagnetic Field Strength: EN 55011 Group 1, class A Noise Terminal Voltage: EN 55011 Group 1, class A EMS: EN 61326 ESD Immunity: EN 61000-4-2 Electromagnetic Field Immunity: EN 61000-4-3 Burst Noise Immunity: EN 61000-4-4 Conducted Disturbance Immunity: EN 61000-4-6 Surge Immunity: EN 61000-4-5 Voltage Dip/Interrupting Immunity: EN 61000-4-11
Number of programs (patterns) 8 Number of segments (steps) 32 Segment setting method Time setting (Segment set with set point and time.) Slope setting (Segment set with segment type, set point, slope, and time.) Segment times 0 h 0 min to 99 h 59 min 0 min 0 s to 99 min 59 s Alarm setting Set separately for each program. Reset operation Select either stopping control or fixed SP operation. Startup operation Select continuing, resetting, manual operation, or run mode. PID sets Number of sets 8 Setting method Set separately for each program (automatic PID group selection also supported). Alarm SP function Select from ramp SP and target SP. Program status control Segment operation Advance, segment jump, hold, and wait Program operation Program repetitions and program links Wait operation Wait method Waiting at segment ends Wait width setting Same wait width setting for all programs Time signals Number of outputs 2 Number of ON/OFF Operations 1 each per output Setting method Set separately for each program. Program status output Program end output (pulse width can be set), run output, stage output Program startup operation PV start Select from segment 1 set point, slope-priority PV start Standby 0 h 0 min to 99 h 59 min 0 day 0 h to 99 day 23h Operation end operation Select from resetting, continuing control at final set point, and fixed SP control. Program SP shift Same program SP shift for all programs
USB-Serial Conversion Cable Windows is a registered trademark of Microsoft Corporation in the United States and or other countries. * Use a high-power port for the USB port. Note: A driver must be installed on the computer. Refer to the Instruction Manual included with the Cable for the installation procedure. Communications Specifications * The baud rate, data bit length, stop bit length, and vertical parity can be individually set using the Communications Setting Level. Communications Functions MELSEC is a registered trademark of Mitsubishi Electric Corporation. *1 Both the programless communications and the component communications support the copying. Current Transformer (Order Separately) Ratings Heater Burnout Alarms and SSR Failure Alarms *1 For heater burnout alarms, the heater current will be measured when the control output is ON, and the output will turn ON if the heater current is lower than the set value (i.e., heater burnout detection current value). *2 For SSR failure alarms, the heater current will be measured when the control output is OFF, and the output will turn ON if the heater current is higher than the set value (i.e., SSR failure detection current value). *3 The value is 30 ms for a control period of 0.1 s or 0.2 s. *4 The value is 35 ms for a control period of 0.1 s or 0.2 s. Electrical Life Expectancy Curve for Relays (Reference Values) Applicable OS Windows XP, Vista, or 7 Applicable software CX-Thermo version 4.61 or higher Applicable models E5@C-T Series, E5@C Series, and E5CB Series USB interface standard Conforms to USB Specification 2.0. DTE speed 38400 bps Connector specifications Computer: USB (type A plug) Digital Temperature Controller: Special serial connector Power supply Bus power (Supplied from USB host controller.)* Power supply voltage 5 VDC Current consumption 450 mA max. Output voltage 4.7±0.2 VDC (Supplied from USB-Serial Conversion Cable to the Digital Temperature Controller.) Output current 250 mA max. (Supplied from USB-Serial Conversion Cable to the Digital Temperature Controller.) Ambient operating temperature 0 to 55°C (with no condensation or icing) Ambient operating humidity 10% to 80% Storage temperature -20 to 60°C (with no condensation or icing) Storage humidity 10% to 80% Altitude 2,000 m max. Weight Approx. 120 g Transmission line connection method RS-485: Multidrop Communications RS-485 (two-wire, half duplex) Synchronization method Start-stop synchronization Protocol CompoWay/F, or Modbus Baud rate* 9600, 19200, 38400, or 57600 bps Transmission code ASCII Data bit length* 7 or 8 bits Stop bit length* 1 or 2 bits Error detection Vertical parity (none, even, odd) Block check character (BCC) with CompoWay/F or CRC-16 Modbus Flow control None Interface RS-485 Retry function None Communications buffer 217 bytes Communications response wait time 0 to 99 ms Default: 20 ms Programless communications*1 You can use the memory in the PLC to read and write E5@C-T parameters, start and reset opera- tion, etc. The E5@C-T automatically performs communications with PLCs. No communications programming is required. Number of connected Digital Temperature Con- trollers: 32 max. Applicable PLCs OMRON PLCs CS Series, CJ Series, or CP Series Mitsubishi Electric PLCs MELSEC Q Series, L Series Component Communications When Digital Temperature Controllers are con- nected, set points and RUN/STOP commands can be sent from the Digital Temperature Control- ler that is set as the master to the Digital Temper- ature Controllers that are set as slaves. Slope and offsets can be set for the set point. Number of connected Digital Temperature Con- trollers: 32 max. (including master) Copying*1 When Digital Temperature Controllers are con- nected, the parameters can be copied from the Digital Temperature Controller that is set as the master to the Digital Temperature Controllers that are set as slaves. Dielectric strength 1,000 VAC for 1 min Vibration resistance 50 Hz, 98 m/s2 Weight E54-CT1: Approx. 11.5 g, E54-CT3: Approx. 50 g Accessories (E54-CT3 only) Armatures (2) Plugs (2) CT input (for heater current detection) Models with detection for single-phase heaters: One input Maximum heater current 50 A AC Input current indication accuracy ±5% FS ±1 digit max. Heater burnout alarm setting range 0.1 to 49.9 A (in units of 0.1 A) Minimum detection ON time: 100 ms *3 SSR failure alarm setting range *2 0.1 to 49.9 A (in units of 0.1 A) Minimum detection OFF time: 100 ms *4 500 300 100 01 2 3 4 56 Switching current (A) E5EC-T/E5AC-T (resistive load) cosφ = 1 Life (× 104 operations)
Isolation/Insulation Block Diagrams Models with 4 Auxiliary Outputs Note: Auxiliary outputs 1 to 2 and 3 to 4 are not insulated. Models with 2 Output: Linear Current Output and Voltage (for Driving SSR) CQ OUT1 C OUT2 Q 010 Four event inputs and one CT 008 (6) Options 004 Communications and two event inputs 019 Six event inputs, one CT, and transfer output 022 Communications, four event inputs, and transfer output 021 Six event inputs and transfer output Transfer output (5) Sensor (Temperature/Analog) Input V − 23 V 24+ TC 22+ mA− Pt I A B B (2) Auxiliary Outputs Auxiliary outputs 1 to 4
10 Auxiliary output 2
W O (1)Control Outputs Models with (for Driving SSR) RX QX QR OUT1 OUT1 + ++ − − − Models with 2 Voltage Outputs (for Driving SSR) Models with Voltage Output (for Driving SSR) and Relay Output Models with 1 Linear Current Output QRCX QQ Q QC R Q OUT1 OUT2 OUT1 OUT1 OUT2 Models with 2 Relay Outputs Models with 2 Linear Current Outputs RR/PR CC R R C C OUT1 OUT1 OUT2OUT2 (no polarity) (3) Input Power Supply 100 to 240 VAC B(+) A(-) RS-485 EV1 EV2 B(+) A(-) RS-485 CT1 EV1 EV2 EV3 EV4 CT1 − 33 + + V I EV1 EV2 EV3 EV4 EV5 EV6 −28 V I EV1 EV2 EV5 EV6 B(+) A(-) RS-485 175 11 3 + + V I EV1 EV2 EV3 EV4 EV5 EV6 CT1 Voltage output (for driving SSR) (resistive load) Linear current output 0 to 20 mA DC 4 to 20 mA DC Load: 500 Ω max. Linear current output 0 to 20 mA DC Voltage output (for driving SSR) 21 mA if there are two control outputs Load: 500 Ω max. 4 to 20 mA DC Relay output
250 VAC, 5A (resistive load)
Control output 1 Auxiliary outputsControl output 2 Relay output (resistive load) 005 Four event inputs EV1 EV2 EV3 EV4 * The position-proportional control models (E5EC-TPR@@@M-@@@) will be released in May 2014. Communications, two event inputs, and one CT Transfer output Transfer output E5EC M4 5 Terminal type E5AC M4 5 Terminal type T T Models with 4 auxiliary outputs: The E5@C-T is set for a K-type thermocouple (input type = 5) by default. An input error (s.err) will not occur if the input type setting does not agree with the temperature sensor. Check the input type. Note: 1. The application of the terminals depends on the model. 2. Do not wire the terminals that are shown with a gray background. 3. When complying with EMC standards, the cable that connects the sensor must be 30 m or less. If the cable length exceeds 30 m, compliance with EMC standards will not be possible. 4. Connect M3 crimped terminals. Sensor input, CT input, potentiometer input, and remote SP input Communications and event inputs Voltage output (for driving SSR), linear current output, and transfer output Relay output Auxiliary outputs 1, 2 Auxiliary outputs 3, 4 : Reinforced insulation : Functional isolation Power Supply
Front-panel Setup Tool port Use the M Key to change to another parameter. No. 1 display No. 2 display No. 3 display PV or specified monitor/parameter SP or specified monitor/parameter value Use the U D Keys to set the parameter. Front panel Press O Key for at least 3 seconds to go to Initial Setting Level. Operation indicators Program No., segment No., remaining segment time, or MV (valve opening). Press O Key once to go to Program Setting Level. Use S Key to change the digit (default setting). Press U Key for at least 1 second when Process value/Set point parameter are displayed in Program SP Mode to go to Display Segment Selection parameter in Program Setting Level. Press M and D Keys simultaneously for at least 1 second to switch between run and reset status. E5EC-T Front Panel Top View of E5AC-T Top-panel Setup Tool port Temperature unit Operation indicators Press the M Key to switch to another parameter. No. 1 display No. 2 display No. 3 display PV or specified monitor/parameter SP or specified monitor/parameter value Press the U or D Key to set the parameter. Front-panel Setup Tool port Press the S Key to change the digit (default setting). Program No. and segment No., remaining segment time, or MV (valve opening).Press U Key for at least 1 second when Process value/Set point parameter are displayed in Program SP Mode to go to Display Segment Selection parameter in Program Setting Level.Press M and D Keys simultaneously for at least 1 second to change between run and reset status. Press the O Key for at least 3 seconds to go to the Initial Setting Level. Press the O Key once to go to the Program Setting Level. E5AC-T
Dimensions (Unit: mm) Controllers Mounting Adapter (Accessory) Waterproof Packing (Accessory) 604 (64) 110 E5EC-T 92-0.8 92+0.8 45+0.6 120 min. (48 × number of units − 2.5)+1.0 Group mounting does not allow waterproofing. Mounted Separately Group Mounted * Recommended panel thickness is 1 to 8 mm. Group mounting is not possible in the vertical direction. (Maintain the specified mounting space between Controllers.) To mount the Controller so that it is waterproof, insert the waterproof packing onto the Controller. When two or more Controllers are mounted, make sure that the surrounding temperature does not exceed the allowable operating temperature specified in the specifications. * Selections for Control Outputs 1 and 2: QQ, QR, RR, CC, PR, or CQ If you also specify 019, 021, 022 for the option selection and use group mounting, the ambient temperature must be 45°C or less. If the ambient temperature is 55°C, maintain the following mounting spaces between Controllers. 45-0.6 60 min. 120 min. 92+0.8 The Setup Tool ports are on the front and top of the Digital Temperature Controller. It is used to connect the Temperature Con- troller to the computer to use the Setup Tool. The E58-CIFQ2 USB-Serial Conversion Cable is required to make the connection. Refer to the instructions that are provided with the USB-Serial Conversion Cable for the connection procedure. Note: Do not leave the USB-Serial Conversion Cable connected when you use the Temperature Controller.
Accessories (Order Separately) 92+0.8 120 min. (96 × number of units − 3.5)+1.0 Group mounting does not allow waterproofing. Mounted Separately Group Mounted * 92+0.8 92+0.8 Mounting Adapter (Accessory) Waterproof Packing (Accessory) (64) 110 91 x 91 96 x 96 E5AC-T Recommended panel thickness is 1 to 8 mm. Group mounting is not possible in the vertical direction. (Maintain the specified mounting space between Controllers.) To mount the Controller so that it is waterproof, insert the waterproof packing onto the Controller. When two or more Controllers are mounted, make sure that the surrounding temperature does not exceed the allowable operating temperature specified in the specifications. The Setup Tool ports are on the front and top of the Digital Temperature Controller. It is used to connect the Temperature Controller to the computer to use the Setup Tool. The E58-CIFQ2 USB-Serial Conversion Cable is required to make the connection. Refer to the instructions that are provided with the USB-Serial Conversion Cable for the connection procedure. Note: Do not leave the USB-Serial Conversion Cable connected when you use the Temperature Controller. (2110) 250 263 1510 USB connector (type A plug) Serial connector LED (SD) LED (PWR) LED (RD)
- USB-Serial Conversion Cable E58-CIFQ2 Connecting to the E58-CIFQ2 USB-Serial Conversion CableConversion Cable (1510) 250 (2110) E58-CIFQ2 (Order Separately) Conversion Cable 263 1510 Note: Always use this product together with the E58-CIFQ2.
- Conversion Cable E58-CIFQ2-E
2 3.8
- Terminal Covers E53-COV24 (Three Covers provided.)
- Waterproof Packing Y92S-P9 (for DIN 48 × 96) The Waterproof Packing is provided with the Temperature Controller. Order the Waterproof Packing separately if it becomes lost or damaged. The degree of protection when the Waterproof Packing is used is IP66. Also, keep the Port Cover on the front-panel Setup Tool port of the E5EC-T/E5AC-T securely closed. To maintain an IP66 degree of protection, the Waterproof Packing and the Port Cover for the front-panel Setup Tool port must be periodically replaced because they may deteriorate, shrink, or harden depending on the operating environment. The replacement period will vary with the operating environment. Check the required period in the actual application. Use 3 years or sooner as a guideline. If a waterproof structure is not required, then the Waterproof Packing does not need to be installed. Y92S-P10 (for DIN 96 × 96)
- Setup Tool Port Cover for top panel Y92S-P7
- Mounting Adapter Y92F-51 (Two Adapters provided.) Order this Port Cover separately if the Port Cover on the front-panel Setup Tool port is lost or damaged. The Waterproof Packing must be periodically replaced because it may deteriorate, shrink, or harden depending on the operating environment. One pair is provided with the Controller. Order this Adapter separately if it becomes lost or damaged.
- Current Transformers 131.7 115.6 29.4 21.9 (2)
- Watertight Cover Y92A-96N (96 × 96)
- Watertight Cover Y92A-49N (48 × 96) 131.7 67.6 29.4 21.9 (2) E54-CT3 Accessories Armature 15 5.8 dia. 25 3 10.5 2.8 7.5 Two, 3.5 dia. 40 × 40 12 dia. 2.36 dia. Two, M3 (depth: 4) Approx. 3 dia. (22) Approx. 6 dia. Plug Armature Lead E54-CT1 E54-CT3 Connection Example P l u g Thru-current (Io) vs. Output Voltage (Eo) (Reference Values) E54-CT1 Maximum continuous heater current: 50 A (50/60 Hz) Number of windings: 400 ±2 Winding resistance: 18 ±2 Ω Thru-current (Io) A (r.m.s.) 1 10 100mA 1 10 100 1,000A 100V Frequency: 50 Hz 100Ω RL=10Ω ∞10 100mV 100μV 1kΩ Distortion factor 10% Output voltage (Eo) V (r.m.s.) Thru-current (Io) vs. Output Voltage (Eo) (Reference Values) E54-CT3 Maximum continuous heater current: 120 A (50/60 Hz) (Maximum continuous heater current for an OMRON Digital Temperature Controller is 50 A.) Number of windings: 400 ±2 Winding resistance: 8 ±0.8 Ω Thru-current (Io) A (r.m.s.) 1 10 100mA 1 10 100 1,000A 100V Frequency: 50 Hz 1kΩ 100Ω 50Ω RL=10Ω 500Ω ∞10 100mV 100μV Distortion factor 10% Output voltage (Eo) V (r.m.s.)
E5@C/E5@C-T Operation Setting Levels Diagram E5C This diagram shows all of the setting levels. To move to the advanced function setting level and calibration level, you must enter passwords. Some parameters are not displayed depending on the protect level setting and the conditions of use. Control stops when you move from the operation level to the initial setting level. *1 Set the PF Setting parameter to a-m (Auto/Manual). *2 The No. 1 display will flash when the keys are pressed for 1 s or longer. *3 Set the PF Setting parameter to pfdp (monitor/setting items). Operation in progressStopped Communications Setting Level Advanced Function Setting Level Power ON Initial Setting Level Operation Level Adjustment Level Press the O + M Keys for at least 1 sOnly when Manual Mode was used just before power OFF Level changes automatically. Press the S Key. *3 Press the S Key.*3 Protect Level Calibration Level Manual Control Level Press the O Key for at least 1 s. Press the O Key for at least 1 s or the S Key for at least 1 s*1 Used to set the MV manually. Used for SP, alarm values, and other basic settings and monitoring. Used to set protection for operations. Used to change adjustment parameters (PID constants, adjustment sensitivity, etc.). Press the O + M Keys for at least 3 s.*2 Release protection and then enter the password (−169) for the amoV (Move to Advanced Setting Level) parameter. Used to set application functions. Enter the password (1201) while cmov (Move to Calibration Level parameter) is displayed. Used to set the input type and other basic settings. Press the O Key for at least 1 s. Used to set up communications. Press the O Key for at least 3 s*2 Press the O Key for less than 1 s. (models with communications only). Press the O Key once. O Key for at least 3 s while a-m is displayed.*2 S Key for at least 1 s*1 Monitor/Setting Item Level Used to display specified monitor and setting items.
E5@C/E5@C-T E5C-T This diagram shows all of the setting levels. To move to the advanced function setting level and calibration level, you must enter passwords. Some parameters are not displayed depending on the protect level setting and the conditions of use. *1 Set the PF Setting parameter to a-m (Auto/Manual). *2 The No. 1 display will flash when t he keys are pressed for 1 s or longer. *3 Set the PF Setting parameter to pfdp (monitor/setting items). Operation in progressStopped Calibration Level Control stops. Advanced Function Setting Level Advanced settings Communications Setting Level Power ON Initial Setting Level Operation Level Adjustment Level Monitor/Setting Item Level Press O and M Keys for at least 1 s. Starting in manual mode Level changes automatically. Press O Key for less than 1 s. Protect Level Manual Control Level Used to set the MV manually. Used for SPs and other basic settings and monitoring. Press O Key for at least 3 s while a-m is displayed.*2 Used to set protection for operations. Enter the password (1201) while cmov (Move to Calibration Level parameter) is displayed. Used to set the input type and other basic settings. Press S Key.*3 Used to display specified monitor and setting items. Press O or S Key for at least 1 s.*1 Program Setting Level Parameter and segment settings for all programs Press S Key for at least 1 s.*1 Press O Key for at least 1 s. Press O Key for less than 1 s. Press O Key for less than 1 s. Press O Key for less than 1 s. PID Setting Level Parameters for all PID sets (e.g., PID constants) Adjustment parameters (e.g., PID constants for current PID set)Press O Key for at least 3 s.*2 Press S Key.*3 Press O Key for less than 1 s (only models with communications). Press O Key for at least 1 s. Communications settings Release protection and then enter the password (−169) for the amoV (Move to Advanced Function Setting Level) parameter. Press O and M Keys for at least 3 s.
E5@C/E5@C-T Operation Starting in Manual Mode. Starting in Automatic Mode. PID Control only PV/MV Press the O Key less than 1 s. Press the O and M Keys for at least 3 s. Press the O and M Keys for at least 1 s. Press the O Key less than 1 s. Press the O Key for at least 1 s. Press the O Key for less than 1 s. Press the O Key for at least 3 s. Other than the Auto/Manual Switch display Press the S Key*2 Press the S Key for at least 1 s. Press the O Key or the S Key for at least 1 s. *1. When the PF Setting parameter is set to A-M. *2. When the PF Setting parameter is set to PFDP . Press the S Key*2 Displayed only for models with communications. Changes are effective after cycling power or after a software reset. *3. Used with component communications. M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M MM M M M M M M M M M M M M M M M M M M M M M M M M M M * Used with programless communications M M M M M M M M M M M M M M M M M M M M M M pmsk on C l.adj ins 0.0 rss 0.0 inrt 1.000 rsrt 1.000 c-p 8.0 c-i 233 c-d M M M p 8.0 i 233 d c-db 0.0 of-r 50.0 hys 1.0 chys 1.0 soak wt-b off mv-s 0.0 pmov psel cwf u-no bps 9.6 len sbit prty even sdwt maxu area adrh adrl rwat 1000 unit up 1 up13 dn 1 dn13 copy off sps 1.000 spos 0.0 oapt icpt wtpt off pfpt off M M chgp off M prlp mv-e 0.0 sprl same M sprt off w1on w2on w3on w4of w5on w6on w7on w8on w1of w2of w3of w4on w5of w6of w7of w8of plcm ol-h 100.0 ol-l 0.0 M sqrp 0.0 M oc-h 0.8 at off cmwt off ct1 0.0 M spmd lsp hb1 0.0 ct2 0.0 hb2 0.0 lcr1 0.0 hs1 50.0 lcr2 0.0 hs2 50.0 sp-0 sp-1 sp-2 sp-3 sp-4 sp-5 sp-6 sp-7 M sp-3 r-s run v-m in-t in-h 100 in-l dp d-u c sl-h 1300 sl-l -200 cntl onof s-hc stnd st on ptrn off cp c-cp orev or-r alt1 alh1 0.2 al-1 al1h al1l al-2 al2h al2l al-4 al4h al4l M M M al-3 al3h al3l o 0.0 c-o 0.0 0.0 a-m m-sp sp-m rsp 0.0 ct1 0.0 ct2 0.0 lcr1 0.0 lcr2 0.0 prst rset M sktr M orl 0.0 M db 2.0 Power ON Adjustment Level Press the O Key less than 1 s. Manual Control Level Adjustment Level Display Displayed only once when entering adjustment level. AT Execute/Cancel Communications Writing Heater Current 1 Value Monitor Heater Burnout Detection 1 Heater Current 2 Value Monitor Heater Burnout Detection 2 Leakage Current 1 Monitor Leakage Current 2 Monitor HS Alarm 1 SP Mode SP 4 SP 5 SP 6 SP 7 HS Alarm 2 SP 0 SP 1 SP 2 SP 3 Proportional Band (Cooling) Integral Time (Cooling) Derivative Time (Cooling) Process Value Input Shift Remote SP Input Shift Process Value Slope Coefficient Remote SP Input Slope Coefficient Proportional Band Integral Time Derivative Time Dead Band SP Ramp Fall Value Manual Reset Value Hysteresis (Heating) Hysteresis (Cooling) Soak Time Wait Band MV at Stop MV at PV Error SP Ramp Set Value MV Upper Limit MV Lower Limit MV Change Rate Limit Work Bit 1 ON Delay Work Bit 2 ON Delay Work Bit 3 ON Delay Work Bit 4 OFF Delay Work Bit 5 ON Delay Work Bit 6 ON Delay Work Bit 7 ON Delay Work Bit 8 ON Delay Work Bit 1 OFF Delay Work Bit 2 OFF Delay Work Bit 3 OFF Delay Work Bit 4 ON Delay Work Bit 5 OFF Delay Work Bit 6 OFF Delay Work Bit 7 OFF Delay Work Bit 8 OFF Delay Extraction of Square Root Low-cut Point Press the O Key for at least 3 s. Process Value/ Set Point 1 Process Value/ Set Point 2 Auto/Manual Switch Multi-SP Set Point During SP Ramp Heater Current 1 Value Monitor Heater Current 2 Value Monitor Leakage Current 1 Monitor Leakage Current 2 Monitor Program Start Soak Time Remain RUN/STOP Remote SP Monitor Operation Level Position Proportional Dead Band Open/Close Hysteresis Communications Monitor Initial Setting Level Alarm Value 1 Alarm Value Upper Limit Alarm Value Lower Limit Alarm Value 2 Alarm Value Upper Limit Alarm Value Lower Limit Alarm Value 3 Alarm Value Upper Limit Alarm Value Lower Limit MV Monitor (Heating) MV Monitor (Cooling) Alarm Value Upper Limit Alarm Value Lower Limit Alarm Value 4 Valve Opening Monitor Protect Level Communications Setting Level Move to Protect Level: Displayed only when a password is set. Operation/Adjustment Protect Initial Setting/Communications Protect Setting Change Protect Password to Move to Protect Level PF Key Protect Parameter Mask Enable Changed Parameters Only Protocol Setting: Switches between CompoWay/F and Modbus. Communications Unit No. Communications Baud Rate Communications Data Length Communications Stop Bits Communications Parity Send Data Wait Time ST (Self-tuning) Input Type Scaling Upper Limit Scaling Lower Limit Decimal Point Temperature Unit SP Upper Limit SP Lower Limit PID ON/OFF Standard or Heating/Cooling Program Pattern Control Period (Heating) Control Period (Cooling) Direct/Reverse Operation Alarm 1 Type Alarm 1 Hysteresis Highest Communications Unit No. The time taken to move to the protect level can be adjusted by changing the "Move to protect level time" setting. Area First Address Upper Word First Address Lower Word Receive Data Wait Time Communications Node Number Upload Setting 1 Upload Setting 13 Download Setting 1 Download Setting 13 Copy SP Slope SP Offset M Alarm 2 Type M alh2 0.2 Alarm 2 Hysteresis alt2 Parameters E5@C The following pages describe the parameters set in each level. Pressing the M (Mode) Key at the last parameter in each level returns to the top parameter in that level. Some parameters may not be displayed depending on the model and other settings.
E5@C/E5@C-T SS S S M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M init off a1lt off a2lt off a3lt off a4lt off prlt a1on a2on a3on a4on a1of a2of a3of a4of mvse off amad off mant hold mani 0.0 rt off hsu on pf shft pfd1 pfd2 pfd3 pfd4 pfd5 spd1 spd2 odsl o pvdp on pvst off svst off d.ref 0.25 lcmt 0.2 hsl off hsh 0.1 lba lbal 8.0 lbab 3.0 out1 o out2 none sub1 alm1 sub2 alm2 sub3 alm3 sub4 alm4 alma t-u m alsp sp-m rs-t 4-20 rspu off rsph 1300 rspl -200 M M M M M sptr off p-db pvrp hctm off ompw 1.0 mspu off spru m rest a sb1n n-o sb2n n-o sb3n n-o sb4n n-o hbu on hbl off hbh 0.1 st-b 15.0 alfa 0.65 tidu at-g 0.8 at-h 0.8 lcma 20.0 inf 0.0 mav off M M M MM o-dp off ret off brgt 3alt4 alh4 0.2 M M alt3 alh3 0.2 tr-t off tr-h 100.0 tr-l 0.0 ev-1 msp0 ev-2 stop ev-3 none ev-4 none M M ev-5 none ev-6 none sqr off M mot M calb off M clfl flot M o1st 4-20 M o2st 4-20 M trst 4-20 amov M M M M M M cjc on M manl off M pmvd off M PV/SP No. 1 Display Selection PV/SP No. 2 Display Selection Integral/Derivative Time Unit Integrated Alarm Assignment Remote SP Input Remote SP Enable Remote SP Upper Limit Remote SP Lower Limit Moving Average Count Manual Output Method Manual MV Initial Value Heating/Cooling Tuning Method Minimum Output ON/OFF Band SP Tracking Display Brightness Event Input Assignment 5 Control Output 1 Signal Control Output 2 Signal Transfer Output Signal Event Input Assignment 6 RT Monitor/Setting Item Level Monitor/Setting Item Display 1 Note: The monitor/setting items to be displayed is set in the Monitor/Setting Item 1 to 5 parameters (advanced function setting level). Monitor/Setting Item Display 2 Monitor/Setting Item Display 3 Monitor/Setting Item Display 4 Monitor/Setting Item Display 5 Press the O Key for at least 1 s. Advanced Function Setting Level Alarm 3 Type Alarm 3 Hysteresis Transfer Output Type Transfer Output Upper Limit Transfer Output Lower Limit Event Input Assignment 1 Event Input Assignment 2 Extraction of Square Root Enable Move to Advanced Function Setting Level: Displayed when initial setting/communications protect is set to 0. Move by setting password (−169). Parameter Initialization Number of Multi-SP Points SP Ramp Time Unit Standby Sequence Reset Auxiliary Output 1 Open in Alarm Auxiliary Output 2 Open in Alarm Auxiliary Output 3 Open in Alarm HB ON/OFF Heater Burnout Latch Heater Burnout Hysteresis ST Stable Range AT Calculated Gain α AT Hysteresis Limit Cycle MV Amplitude Input Digital Filter MV Display Automatic Display Return Time Alarm 1 Latch Alarm 2 Latch Alarm 3 Latch Move to Protect Level Time Cold Junction Compensation Method Alarm 1 ON Delay Alarm 2 ON Delay Alarm 3 ON Delay Alarm 1 OFF Delay Alarm 2 OFF Delay Alarm 3 OFF Delay MV at Stop and Error Addition Auto/Manual Select Addition HS Alarm Use HS Alarm Latch HS Alarm Hysteresis LBA Detection Time LBA Level LBA Band Control Output 1 Assignment Control Output 2 Assignment Auxiliary Output 4 Assignment (E5EC/E5AC only) Soak Time Unit Alarm SP Selection Manual MV Limit Enable PV Rate of Change Calculation Period LCT Cooling Output Minimum ON Time PF Setting Monitor/Setting Item 1 Monitor/Setting Item 2 Monitor/Setting Item 3 Monitor/Setting Item 4 Monitor/Setting Item 5 MV Display Selection PV Decimal Point Display PV Status Display Function SV Status Display Function Display Refresh Period Auxiliary Output 4 Open in Alarm Alarm 4 Latch Alarm 4 ON Delay Alarm 4 OFF Delay Auxiliary Output 1 Assignment Auxiliary Output 2 Assignment Auxiliary Output 3 Assignment Alarm 4 Type Alarm 4 Hysteresis Event Input Assignment 3 Event Input Assignment 4 Motor Calibration Close/Floating Travel Time PV Dead Band Direct Setting of Position Proportional MV M cmov Move to Calibration Level o1th 100.0 o1tl 0.0 Simple Transfer Output 1 Upper Limit Simple Transfer Ouptut 1 Lower Limit
E5@C/E5@C-T 100 stb 0.00 psps p 8.0 i 233 wt-b off ins 0.0 inrt 1.000 d c-p 8.0 c-i 233 M c-d l.adj 1234 at off cmwt off spmd psp fsp M Adjustment Level Display Displayed only once when entering Adjustment Level. AT Execute/Cancel Communications Writing SP Mode Fixed SP PV Input Shift PV Input Slope Coefficient Wait Band Standby Time Program SP Shift Value Proportional Band Integral Time Derivative Time Proportional Band (Cooling) Integral Time (Cooling) Derivative Time (Cooling) c-db 0.0 Dead Band ct1 0.0 hb1 0.0 M Heater Current 1 to 2 Value Monitor Heater Burnout Detection 1 to 2 lcr1 0.0 hs1 50.0 M Leakage Current 1 to 2 Value Monitor HS Alarm 1 to 2 Adjustment Level M M M M M M M M M M M M M M M M M rpt link end M pid M PID Set No. Display Segment Selection END or 0 to Number of segments used − 1 d.seg end U Display Program Selection Press the U Key for at least 1 s in Program SP Mode. Number of Segments Used For end Program Repetitions Program Link Destination Process Value/Set Point 1 or Process Value/Set Point 2 in Operation Level s-no M 7654321 d.prg D 7654321 d.seg al1l al-1 al1h M M Alarm Value 1 to 4 Alarm Upper Limit 1 to 4 Alarm Lower Limit 1 to 4 of1 0.00 M ts1s on1 0.00 M M Time Signal 1 to 2 Set Segment Time Signal 1 to 2 ON Time Time Signal 1 to 2 OFF Time U D U D Program Setting Level styp ramp Segment n Format sp Segment n SP pr Segment n Slope time 0.00 Segment n Time M MFor 0 to 7 M M M M M M M 1.c-d 1.cdb 0.0 1.ofr s0.0 1.olh 100.0 1.oll 0.0 1.aut 1320 1.lba M 1.p 8.0 1.i 233 1.d 1.c-p 8.0 1.c-i 233 PID 1 Proportional Band PID 1 Integral Time PID 1 Derivative Time PID 1 Proportional Band (Cooling) PID 1 Integral Time (Cooling) PID 1 Derivative Time (Cooling) PID 1 Dead Band PID 1 Manual Reset Value PID 1 MV Upper Limit PID 1 MV Lower Limit PID 1 Automatic Selection Range Upper Limit PID 1 LBA Detection Time M M PID Setting Level M M M M M M M M M M Display PID Selection 8765432 d.pid U D hold off ct1 0.0 pgsg 0.00 prg a-m lcr1 0.0 o 0.0 c-o 0.0 r-r rst v-m 0.0 M seg stbm 0.00 prgt 0.00 rptm Process Value/Set Point 1 Process Value/Set Point 2 Auto/Manual Switch Program No. Monitor/ Segment No. Monitor Program Number Hold Segment Number Remaining Standby Time Monitor Heater Current 1 to
2 Value Monitor
(Heating) MV Monitor (Cooling) Valve Opening Monitor Elapsed Program Time Monitor Program Execution Repetitions Monitor Run/Reset (of the program) Operation Level M M M M M M M M M M M M M M M 50.0 PV/Manual MV Manual Control Level Press O Key for at least 3 s while a-m is displayed. Press O or S Key for at least 1 s. Press S Key for at least 1 s. S * The monitor/setting items to display are set in the Monitor/Setting Item 1 to 5 parameters (Advanced Function Setting Level). PF Monitor/Setting Item display 2 to 5 Monitor/Setting Item Level PF Monitor/ Setting Item display 1 Press O Key for less than 1 s.Press O Key for less than 1 s. Press S Key.*2 Press S Key.*2 Starting in manual mode Power ON Press O Key for less than 1 s. Press O Key for less than 1 s. E5@C-T Some parameters may not be displayed depending on the model and other settings.
E5@C/E5@C-T 101 ol-h 100.0 ol-l 0.0 orl 0.0 db 2.0 oc-h 0.8 sqrp 0.0 of-r 50.0 hys 1.0 chys 1.0 mv-r 0.0 mv-e 0.0 Manual Reset Value Hysteresis (Heating) Hysteresis (Cooling) MV at Reset MV at PV Error MV Upper Limit MV Lower Limit MV Change Rate Limit Position Proportional Dead Band Open/Close Hysteresis Extraction of Square Root Low-cut Point plcm M Communications Monitor Work Bit 1 to 8 OFF Delay Work Bit 1 to 8 ON Delay M M M M M M M M M M M M w1on w1of M Parameter Mask EnableInitial Setting/ Communications Protect Setting Change Protect Password to Move to Protect Level PF Key Protect pmsk on pmov oapt icpt wtpt off pfpt off prlp Protect Level Move to Protect Level Operation/Adjustment Protect MM M M M M M s-hc stnd cp c-cp orev or-r sl-l -200 t-u h-m t-pr time pru m rtsm stop p-on cont eset rst cntl pid pvst sp tspu M in-t in-h 100 in-l dp d-u c sl-h 1300 Scaling Upper Limit Scaling Lower Limit Decimal Point Temperature Unit SP Upper Limit SP Lower Limit Program Time Unit Step Time/Rate of Rise Programming Time Unit of Ramp Rate Reset Operation Startup Operation Operation End Operation PV Start All PID AT Upper Limit SP PID ON/OFF Standard or Heating/Cooling Control Period (Heating) Control Period (Cooling) Direct/Reverse Operation trst 4-20 tr-t off tr-h 100.0 tr-l 0.0 ev-1 rr-1 clfl flot calb off mot vl-c Transfer Output Signal Transfer Output Type Transfer Output Upper Limit Transfer Output Lower Limit Event Input Assignment 1 Close/Floating Motor Calibration Travel Time Valve Completely Closed Position vl-o 9999 pms sqr off amov Valve Completely Open Position Potentiometer Specification Setting Extraction of Square Root Enable Moves to Advanced Function Setting Level Input Type alt1 alh1 0.2 M Alarm 1 to 4 Type Alarm 1 to 4 Hysteresis o1st 4-20 Control output 1 to 2 Signal Initial Setting Level Enter password (−169) to move. M M M M M M M M M M M M M M M M M ev-2 adv Event Input Assignment 2 ev-3 none Event Input Assignment 3 to 6 M M M M M M M M M M M M M M M M M M M *1 When PF Setting = A-M. *2 When PF Setting = PFDP. Models with communications only: Changes to settings are applied when the power is cycled or a software reset is performed. Protocol Setting Communications Unit No. Communications Baud Rate Communications Data Length Communications Stop Bits Communications Parity Send Data Wait Timepsel cwf u-no M bps 9.6 len sbit sdwt Communications Setting Level M M M M M Highest Communications Unit No. Area First Address Upper Word First Address Lower Word Receive Data Wait Time Communications Node Number Upload Setting 1 to 23 Download Setting 1 to 43 Copy M maxu area adrh adrl rwat 1000 unit up 1 copy off M M M M M M M M M M dn 1 prty even Press O Key for less than 1 s. Press O + M Key for at least 1 s. Press O Key for at least 1 s. Press O Key for at least 3 s. Press O Key for at least 1 s. Press O Key for at least 3 s. Press O + M Key for at least 3 s. (The key pressing time can be changed in the Move to Protect Level Time parameter (Advanced Function Setting Level).) Press O + M Key for at least 3 s.
E5@C/E5@C-T 102 Advanced Function Setting Level Alarm 1 to 4 Latch HS Alarm Latch HS Alarm Hysteresis LBA Detection Time LBA Level LBA Band Control Output 1 Assignment HS Alarm Use Parameter Initialization Heater Burnout Latch Program End ON Time Standby Time Unit Standby Sequence Reset Auxiliary Output 1 to 4 Open in Alarm Heater Burnout Hysteresis HB ON/OFF PF Setting PF Monitor/Setting Item 1 PF Monitor/ Setting Item 2 to 5 PV/SP No. 1 Display Selection PV Status Display Function SV Status Display Function PV/SP No. 2 Display Selection Parameter Mask Setting Input Digital Filter α Integral/Derivative Time Unit AT Calculated Gain AT Hysteresis Limit Cycle MV Amplitude Alarm SP Selection Moving Average Count Manual Output Method Manual MV Initial Value RT Display Refresh Period init a1lt mant mani rt hsu pf pfd1 pfd2 spd1 spd2 pvst svst d.ref pmst hsl hsh lba lbal lbab out1 alsp PV Dead Band Heating/Cooling Tuning Method PV Rate of Change Calculation Period Minimum Output ON/OFF Band PID Set Automatic Selection Hysteresis pidh p-db pvrp hctm ompw pend s-u rest sb1n hbu hbl hbh alfa tidu at-g at-h lcma inf mav Automatic Display Return Time Display Brightness ret brgt Manual MV Limit Enablemanl Direct Setting of Position Proportional MVpmvd Burnout Methodburn off off hold 0.0 off on shft off off 0.25 off Move to Calibration Levelcmov off 0.1 8.0 3.0 o sp-m 0.50 PID Set Automatic Selection Data pidi pv SP Trackingsptr off 1.0 LCT Cooling Output Min. ON Time lcmt 0.2 0.0 h-m a n-o on off 0.1 0.65 0.8 0.8 20.0 0.0 off off off off up M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M M Move to Protect Level Time Alarm 1 to 4 ON Delay Alarm 1 to 4 OFF Delay prlt a1on a1of Cold Junction Compensation Method cjc on M M M Control Output 2 Assignment Auxiliary Output 1 Assignment Auxiliary Output 2 Assignment Auxiliary Output 3 Assignment Auxiliary Output 4 Assignment Integrated Alarm Assignment out2 sub1 sub2 sub3 sub4 alma none alm1 alm2 alm3 alm4 M M M M M M
E5@C/E5@C-T 103 Error Displays (Troubleshooting) When an error occurs, the No. 1 display or No. 2 display shows the error code. Take necessary measure according to the error code, referring the following table. Display Name Meaning Action Operation s.err Input error The input value exceeded the control range.* The input type is not set correctly. The sensor is disconnected or short- circuited. The sensor is not wired correctly. The sensor is not wired. * Control Range Temperature resistance thermometer or thermocouple input: SP Lower Limit - 20°C to SP Upper Limit + 20°C (SP Lower Limit - 40°F to SP Upper Limit + 40°F) ESIB input: Same as specified input range. Analog input: Scaling range -5% to 105% Check the wiring for input to be sure it is wired correctly, not broken, and not shorted. Also check the input type. If there are no problems in the wiring or input type settings, cycle the power supply. If the display remains the same, replace the Digital Temperature Controller. If the display is restored to normal, then the probable cause is external noise affecting the control system. Check for external noise. Note: For a temperature resistance thermometer, the input is considered disconnected if the A, B, or B’ line is broken. After the error occurs and it is displayed, the alarm output will operate as if the upper limit was exceeded. It will also operate as if transfer output exceeded the upper limit. If an input error is assigned to a control output or auxiliary output, the output will turn ON when the input error occurs. The error message will appear in the display for the PV. Note: 1. The heating and cooling control outputs will turn OFF. 2. When the manual MV, MV at stop, MV at reset, or MV at error is set, the control output is determined by the set value. [[[[ Display range exceeded Below -1,999 This is not an error. It is displayed when the control range is wider than the display range and the PV exceeds the display range. The PV is displayed for the range that is given on the left (the number without the decimal point). Control continues and operation is normal. The value will appear in the display for the PV. Refer to the E5@C Digital Temperature Controllers User’s Manual (Cat. No. H174) or the E5@C-T Digital Temperature Controllers Programmable Type User’s Manual (Cat. No. H185) for information on the controllable range. ]]]] Above 9,999 e333 A/D converter error There is an error in the internal circuits. After checking the input error, turn the power OFF then back ON again. If the display remains the same, the controller must be repaired. If the display is restored to normal, then a probable cause can be external noise affecting the control system. Check for external noise. The control outputs, auxiliary outputs, and transfer outputs turn OFF. (A current output will be approx. 0 mA and a linear voltage output will be approx. 0V.) e111 Memory error There is an error in the internal memory operation. First, cycle the power supply. If the display remains the same, the controller must be repaired. If the display is restored to normal, then a probable cause can be external noise affecting the control system. Check for external noise. The control outputs, auxiliary outputs, and transfer outputs turn OFF. (A current output will be approx. 0 mA and a linear voltage output will be approx. 0V.) ffff Overcurrent This error is displayed when the peak current exceeds 55.0 A. - Control continues and operation is normal. The error message will appear for the following displays. Heater Current Value 1 Monitor Heater Current Value 2 Monitor Leakage Current Value 1 Monitor Leakage Current Value 2 Monitor ct1 ct2 lcr1 lcr2 HB or HS alarm If there is a HB or HS alarm, the No. 1 display will flash in the relevant setting level. The No. 1 display for the following parameter flashes in Operation Level or Adjustment Level. Heater Current Value 1 Monitor Heater Current Value 2 Monitor Leakage Current Value 1 Monitor Leakage Current Value 2 Monitor However, control continues and operation is normal.---- Potentiometer Input Error (Position- proportional Models Only) "----" will be displayed for the Valve Opening Monitor parameter if any of the following error occurs.
- Motor calibration has not been performed.
- The wiring of the potentiometer is incorrect or broken.
- The potentiometer input value is incorrect (e.g., the input is out of range or the potentiometer has failed). Check for the above errors. Close control: The control output is OFF or the value that is set for the MV at PV Error parameter is output. Floating control: Operation will be normal.
E5@C/E5@C-T 104 Safety Precautions
- Be sure to read the precautions for all E5@C/E5@C-T models in the website at: http://www.ia.omron.com/. Warning Indications Meaning of Product Safety Symbols Do not touch the terminals while power is being supplied. Doing so may occasionally result in minor injury due to electric shock. Electric shock may occur. Do not touch any cables or connectors with wet hands. Electric shock, fire, or malfunction may occasionally occur. Do not allow metal objects, conductors, cuttings from installation work, or moisture to enter the Digital Temperature Controller or the Setup Tool port or ports. Attach the cover to the front-panel Setup Tool port whenever you are not using it to prevent foreign objects from entering the port. Do not use the Digital Temperature Controller where subject to flammable or explosive gas. Otherwise, minor injury from explosion may occasionally occur. Not doing so may occasionally result in fire. Do not allow dirt or other foreign objects to enter the Setup Tool port or ports, or between the pins on the connectors on the Setup Tool cable. Minor electric shock or fire may occasionally occur. Do not use any cables that are damaged. Never disassemble, modify, or repair the product or touch any of the internal parts. Minor electric shock, fire, or malfunction may occasionally occur. CAUTION - Risk of Fire and Electric Shock a. This product is UL listed*1 as Open Type Process Control Equipment. It must be mounted in an enclosure that does not allow fire to escape externally. b. More than one disconnect switch may be required to de- energize the equipment before servicing the product. c. Signal inputs are SELV, limited energy. *2 d. Caution: To reduce the risk of fire or electric shock, do not interconnect the outputs of different Class 2 circuits. *3 If the output relays are used past their life expectancy, contact fusing or burning may occasionally occur. Always consider the application conditions and use the output relays within their rated load and electrical life expectancy. The life expectancy of output relays varies considerably with the output load and switching conditions. Even if you replace only the Main Unit of the E5DC, check the condition of the Terminal Unit. If corroded terminals are used, contact failure in the terminals may cause the temperature inside the Digital Temperature Controller to increase, possibly resulting in fire. If the terminals are corroded, replace the Terminal Unit as well. Tighten the terminal screws to the rated torque of between 0.43 and 0.58 Nm. *4 Loose screws may occasionally result in fire. Set the parameters of the product so that they are suitable for the system being controlled. If they are not suitable, unexpected operation may occasionally result in property damage or accidents. A malfunction in the product may occasionally make control operations impossible or prevent alarm outputs, resulting in property damage. To maintain safety in the event of malfunction of the product, take appropriate safety measures, such as installing a monitoring device on a separate line. *1. E5CC, E5EC, E5AC, and E5DC Digital Temperature Controllers that were shipped through November 2013 are UL recognized. *2. An SELV (separated extra-low vo ltage) system is one with a power supply that has double or reinforced insulation between the primary and the secondary circuits and has an output voltage of *3. A class 2 circuit is one tested and certified by UL as having the current and voltage of the secondary output restricted to specific levels. *4. The specified torque is 0.5 N·m for the E5CC-U. CAUTION Indicates a potentially hazardous situation which, if not avoided, may result in minor or moderate injury or in property damage. Precautions for Safe Use Supplementary comments on what to do or avoid doing, to use the product safely. Precautions for Correct Use Supplementary comments on what to do or avoid doing, to prevent failure to operate, malfunction or undesirable effect on product performance. Used to warn of the risk of electric shock under specific conditions. Used for general prohibitions for which there is no specific symbol. Used to indicate prohibition when there is a risk of minor injury from electrical shock or other source if the product is disassembled. Used for general CAUTION, WARNING, or DANGER precautions for which there is no specified symbol. (This symbol is also used as the alerting symbol, but shall not be used in this meaning on the product.) Used for general mandatory action precautions for which there is no specified symbol. CAUTION
E5@C/E5@C-T 105 Be sure to observe the following precautions to prevent malfunction or adverse affects on the performance or functionality of the product. Not doing so may occasionally result in faulty operation. Do not handle the Digital Temperature Controller in ways that exceed the ratings. 1. This product is specifically designed for indoor use only. Do not use this product in the following places:
- Places directly subject to heat radiated from heating equipment.
- Places subject to splashing liquid or oil atmosphere.
- Places subject to direct sunlight.
- Places subject to dust or corrosive gas (in particular, sulfide gas and ammonia gas).
- Places subject to intense temperature change.
- Places subject to icing and condensation.
- Places subject to vibration and large shocks. 2. Use and store the product within the rated ambient temperature and humidity. Gang-mounting two or more Digital Temperature Controllers, or mounting Digital Temperature Controllers above each other may cause heat to build up inside the Digital Temperature Controllers, which will shorten their service life. In such a case, use forced cooling by fans or other means of air ventilation to cool down the Digital Temperature Controllers. 3. To allow heat to escape, do not block the area around the Digital Temperature Controller. Do not block the ventilation holes on the Digital Temperature Controller. 4. Be sure to wire properly with correct signal name and polarity of terminals. 5. Use the specified size of crimped terminals (M3, width of 5.8 mm or less) to wire the E5CC, E5EC, E5AC, E5DC, or E5@C-T. To connect bare wires to the terminal block of the E5CC, E5EC, E5AC, E5DC, or E5@C-T, use copper braided or solid wires with a gage of AWG24 to AWG18 (equal to a cross-sectional area of 0.205 to 0.823 mm 2). (The stripping length is 6 to 8 mm.) Up to two wires of the same size and type, or two crimped terminals can be inserted into a single terminal. Use the specified size of crimped terminals (M3.5, width of 7.2 mm or less) to wire the E5CC-U. To connect bare wires to the terminal block of the E5CC-U, use copper braided or solid wires with a gage of AWG24 to AWG14 (equal to a cross-sectional area of 0.205 to 2.081 mm 2). (The stripping length is 5 to 6 mm.) Up to two wires of the same size and type, or two crimped terminals can be inserted into a single terminal. Use the specified size of crimped terminals (M3, width of 5.8 mm or less) to wire the E5GC.* To connect bare wires to the terminal block of the E5GC, use copper braided or solid wires with a gauge of AWG24 to AWG18 (equal to a cross-sectional area of 0.205 to 0.823 mm2). (The stripping length for Digital Temperature Controllers with screw terminal blocks is 6 to 8 mm. The stripping length for Digital Temperature Controllers with screwless clamp terminal blocks is 8 to 12 mm.) Up to two wires of the same size and type, or two crimped terminals can be inserted into a single terminal. When connecting two wires into one terminal of a Digital Temperature Controller with a screwless clamp terminal block, use ferrules with a diameter of 0.8 to 1.4 mm and an exposed conductor length of 8 to 12 mm that two wires are crimped for a ferrule.* * The Digital Temperature Controller with screwless clamp terminals underwent UL testing with one braided wire connected. 6. Do not wire the terminals that are not used. 7. Use a commercial power supply for the power supply voltage input to a Digital Temperature Controller with AC input specifications. Do not use the output from an inverter as the power supply. Depending on the output characteristics of the inverter, temperature increases in the Digital Temperature Controller may cause smoke or fire damage even if the inverter has a specified output frequency of 50/60 Hz. 8. To avoid inductive noise, keep the wiring for the product’s terminal block away from power cables carry high voltages or large currents. Also, do not wire power lines together with or parallel to product wiring. Using shielded cables and using separate conduits or ducts is recommended. Attach a surge suppressor or noise filter to peripheral devices that generate noise (in particular, motors, transformers, solenoids, magnetic coils, or other equipment that have an inductance component). When a noise filter is used at the power supply, first check the voltage or current, and attach the noise filter as close as possible to the product. Allow as much space as possible between the product and devices that generate powerful high frequencies (high-frequency welders, high-frequency sewing machines, etc.) or surge. 9. Use this product within the rated load and power supply. 10.Make sure that the rated voltage is attained within two seconds of turning ON the power using a switch or relay contact. If the voltage is applied gradually, the power may not be reset or output malfunctions may occur. 11.Make sure that the Digital Temperature Controller has 30 minutes or more to warm up after turning ON the power before starting actual control operations to ensure the correct temperature display. 12.When executing self-tuning with E5@C, turn ON power to the load (e.g., heater) at the same time as or before supplying power to the product. If power is turned ON to the product before turning ON power to the load, self-tuning will not be performed properly and optimum control will not be achieved. 13.A switch or circuit breaker must be provided close to the product. The switch or circuit breaker must be within easy reach of the operator, and must be marked as a disconnecting means for this unit. 14.Use a soft and dry cloth to clean the product carefully. Do not use organic solvent, such as paint thinner, benzine or alcohol to clean the product. 15.Design the system (e.g., control panel) considering the 2 seconds of delay that the product's output to be set after power ON. 16.The output may turn OFF when you move to the initial setting level. Take this into consideration when performing control operations. 17.The number of non-volatile memory write operations is limited. Therefore, use RAM write mode when frequently overwriting data during communications or other operations. 18.Always touch a grounded piece of metal before touching the Digital Temperature Controller to discharge static electricity from your body. 19.Use suitable tools when taking the Digital Temperature Controller apart for disposal. Sharp parts inside the Digital Temperature Controller may cause injury. 20.For compliance with Lloyd’s standards, the E5CC, E5CC-U, E5EC, and E5AC must be installed under the conditions that are specified in Shipping Standards. 21.For the Digital Temperature Controller with two Setup Tool ports (E5EC/E5AC/E5DC/E5GC), do not connect cables to both ports at the same time. The Digital Temperature Controller may be damaged or may malfunction. 22.Do not place heavy object on the Conversion Cable, bend the cable past its natural bending radius, or pull on the cable with undue force. 23.Do not disconnect the Communications Conversion Cable or the USB-Serial Conversion Cable while communications are in progress. Damage or malfunction may occur. 24.Do not touch the external power supply terminals or other metal parts on the Digital Temperature Controller. 25.Refer to the E5@C Digital Temperature Controllers User’s Manual (Cat. No. H174) for information on the communications distances and cables for the E5@C. For details on the E5@C-T, refer to the E5 @C-T Digital Temperature Controllers Programmable Type User’s Manual (Cat. No. H185). 26.Do not bend the communications cables past their natural bending radius. Do not pull on the communications cables. 27.Do not turn the power supply to the Digital Temperature Controller ON or OFF while the USB-Serial Conversion Cable is connected. The Digital Temperature Controller may malfunction. 28.Make sure that the indicators on the USB-Serial Conversion Cable are operating properly. Depending on the application conditions, deterioration in the connectors and cable may be accelerated, and normal communications may become impossible. Perform periodic inspection and replacement. 29.Connectors may be damaged if they are inserted with excessive force. When connecting a connector, always make sure that it is oriented correctly. Do not force the connector if it does not connect smoothly. Precautions for Safe Use
E5@C/E5@C-T 106 30.Noise may enter on the USB-Serial Conversion Cable, possibly causing equipment malfunctions. Do not leave the USB-Serial Conversion Cable connected constantly to the equipment. 31.For the E5DC, when you attach the Main Unit to the Terminal Unit, make sure that the hooks on the Main Unit are securely inserted into the Terminal Unit. 32.For the E5CC-U, when you attach the Main Unit to the socket, make sure that the hooks on the socket are securely inserted into the Main Unit. 33.Install the DIN Track vertically to the ground. 34.For the E5DC, always turn OFF the power supply before connecting the Main Unit to or disconnecting the Main Unit from the Terminal Unit, and never touch nor apply shock to the terminals or electronic components. When connecting or disconnecting the Main Unit, do not allow the electronic components to touch the case. 35.Observe the following precautions when you remove the terminal block or pulling out the interior of the product of the E5GC.
- Always follow the instructions provided in the E5@C Digital Temperature Controllers User’s Manual (Cat. No. H174).
- Turn OFF the power supply before you start and never touch nor apply shock to the terminals or electric components. When you insert the interior body of the Digital Temperature Controller, do not allow the electronic components to touch the case.
- Check for any corrosion on the terminals.
- When you insert the interior body into the rear case, confirm that the hooks on the top and bottom are securely engaged with the case. The E5CC, E5CC-U, E5EC, and E5AC comply with Lloyd's standards. When applying the standards, the following installation requirements must be met in the application. Application Conditions
- Installation Location The E5CC, E5CC-U, E5EC, and E5AC comply with installation category ENV1 and ENV2 of Lloyd's standards. Therefore, they must be installed in a location equipped with air conditioning. They cannot be used on the bridge or decks, or in a location subject to strong vibration.
- Service Life 1. Use the product within the following temperature and humidity ranges: Temperature: -10 to 55°C (with no icing or condensation) Humidity: 25% to 85% If the product is installed inside a control board, the ambient temperature must be kept to under 55°C, including the temperature around the product. The service life of electronic devices like Digital Temperature Controllers is determined not only by the number of times the relay is switched but also by the service life of internal electronic components. Component service life is affected by the ambient temperature: the higher the temperature, the shorter the service life and, the lower the temperature, the longer the service life. Therefore, the service life can be extended by lowering the temperature of the Digital Temperature Controller. 3. When two or more Digital Temperature Controllers are mounted horizontally close to each other or vertically next to one another, the internal temperature will increase due to heat radiated by the Digital Temperature Controllers and the service life will decrease. In such a case, use forced cooling by fans or other means of air ventilation to cool down the Digital Temperature Controllers. When providing forced cooling, however, be careful not to cool down the terminals sections alone to avoid measurement errors.
- Measurement Accuracy 1. When extending or connecting the thermocouple lead wire, be sure to use compensating wires that match the thermocouple types. 2. When extending or connecting the lead wire of the platinum resistance thermometer, be sure to use wires that have low resistance and keep the resistance of the three lead wires the same. 3. Mount the product so that it is horizontally level. 4. If the measurement accuracy is low, check to see if input shift has been set correctly.
- Waterproofing (Not applicable to the E5CC-U/ E5DC.) The degree of protection is as shown below. Sections without any specification on their degree of protection or those with IP@0 are not waterproof. Front panel: IP66, Rear case: IP20, Terminal section: IP00 When waterproofing is required, insert the Waterproof Packing on the backside of the front panel. Keep the Port Cover on the front-panel Setup Tool port of the E5EC/E5AC/E5EC-T/E5AC-T securely closed. The degree of protection when the Waterproof Packing is used is IP66. To maintain an IP66 degree of protection, the Waterproof Packing and the Port Cover for the front-panel Setup Tool port must be periodically replaced because they may deteriorate, shrink, or harden depending on the operating environment. The replacement period will vary with the operating environment. Check the required period in the actual application. Use 3 years or sooner as a guideline. If the Waterproof Packing and Port Cover are not periodically replaced, waterproof performance may not be maintained. If a waterproof structure is not required, then the Waterproof Packing does not need to be installed.
- Operating Precautions 1. When using self-tuning, turn ON power for the load (e.g., heater) at the same time as or before supplying power to the Digital Temperature Controller. If power is turned ON for the Digital Temperature Controller before turning ON power for the load, self- tuning will not be performed properly and optimum control will not be achieved. When starting operation after the Digital Temperature Controller has warmed up, turn OFF the power and then turn it ON again at the same time as turning ON power for the load. (Instead of turning the Digital Temperature Controller OFF and ON again, switching from STOP mode to RUN mode can also be used.) 2. Avoid using the Digital Temperature Controller in places near a radio, television set, or wireless installing. These devices can cause radio disturbances which adversely affect the performance of the Controller.
- Others 1. Do not Connect or disconnect the Conversion Cable connector repeatedly over a short period of time. The computer may malfunction. 2. After connecting the Conversion Cable to the computer, check the COM port number before starting communications. The computer requires time to recognize the cable connection. This delay does not indicate failure. 3. Do not connect the Conversion Cable through a USB hub. Doing so may damage the Conversion Cable. 4. Do not use an extension cable to extend the Conversion Cable length when connecting to the computer. Doing so may damage the Conversion Cable. Shipping Standards Precautions for Correct Use
E5@C/E5@C-T 107
- Mounting Mounting to a Panel E5GC 1. For waterproof mounting, waterproof packing must be installed on the Digital Temperature Controller. Waterproofing is not possible when group mounting several Digital Temperature Controllers. Waterproof packing is not necessary when there is no need for the waterproofing function. 2. Insert the E5GC into the mounting hole in the panel. 3. Use two Mounting Adapters, either on the top and bottom or on the right and left. 4. Push the Adapters from the terminals up to the panel, and temporarily fasten the E5GC. 5. Tighten the two fastening screws on the Adapter. Alternately tighten the two screws little by little to maintain a balance. Tighten the screws to a torque of 0.29 to 0.39 N·m. E5CC/E5CC-T There are two models of Terminal Covers that you can use with the E5CC/ E5CC-T. E5CC-U For the Wiring Socket for the E5CC-U, purchase the P2CF-11 or PG3A-11 separately. 1. For waterproof mounting, waterproof packing must be installed on the Digital Temperature Controller. Waterproofing is not possible when group mounting several Digital Temperature Controllers. Waterproof packing is not necessary when there is no need for the waterproofing function. The E5CC-U cannot be waterproofed even if the Waterproof Packing is inserted. 2. Insert the E5CC/E5CC-U/E5CC-T into the mounting hole in the panel. 3. Push the adapter from the terminals up to the panel, and temporarily fasten the E5CC. 4. Tighten the two fastening screws on the adapter. Alternately tighten the two screws little by little to maintain a balance. Tighten the screws to a torque of 0.29 to 0.39 N·m. E5EC/E5AC/E5EC-T/E5AC-T 1. For waterproof mounting, waterproof packing must be installed on the Digital Temperature Controller. Waterproofing is not possible when group mounting several Digital Temperature Controllers. Waterproof packing is not necessary when there is no need for the waterproofing function. 2. Insert the E5EC/E5AC/E5EC-T/E5AC-T into the mounting hole in the panel. 3. Push the adapter from the terminals up to the panel, and temporarily fasten the E5EC/E5AC/E5EC-T/E5AC-T. 4. Tighten the two fastening screws on the adapter. Alternately tighten the two screws little by little to maintain a balance. Tighten the screws to a torque of 0.29 to 0.39 N·m. E5DC 1. Insert the E5DC into the mounting hole in the panel. (Attach the Terminal Unit after you insert the Main Unit.) 2. Push the Adapter from the Terminal Unit up to the panel, and temporarily fasten the E5DC. 3. Tighten the two fastening screws on the Adapter. Alternately tighten the two screws little by little to maintain a balance. Tighten the screws to a torque of 0.29 to 0.39 N·m. Mounting to and Removing from DIN Track E5DC
- Mounting a Unit Pull down the DIN Track hook on the Terminal Unit and catch the top hook on the DIN Track. Press the Unit onto the DIN Track until the DIN Track hooks are locked in place. Panel Waterproof Packing Adapter Panel Water Proof Packing Terminal Cover (E53-COV17) (Sold separately) Adapter Terminal Cover (E53-COV23) Adapter AdapterPanel Water Proof Packing Terminal Cover (E53-COV24) Terminal Cover (E53-COV24) Main Unit Panel Terminal Unit Adapter 1. Pull down the hook. 2. Catch the top hook on the DIN Track. 4. Make sure that the hooks are locked in place. 3. Press the Unit onto the DIN Track.
E5@C/E5@C-T 108
- Removing a Unit Pull down on the DIN Track Hook with a flat-blade screwdriver and lift up the Unit. Removing the Main Unit Press in the two hooks on the Main Unit and remove the Main Unit from the Terminal Unit. End Plate Installation Make sure to attach PFP-M End Plates to the ends of the Units. Mounting the DIN Track Attach the DIN Track to the inside of the control panel with screws to at least three locations.
- DIN Track (sold separately) PFP-50N (50 cm) and PFP-100N (100 cm) Install the DIN Track vertically to the ground.Mounting the Terminal Cover E5CC/E5CC-T Slightly bend the E53-COV23 Terminal Cover to attach it to the terminal block as shown in the following diagram. The Terminal Cover cannot be attached in the opposite direction. E53-COV17 Terminal Cover can be also attached. Make sure that the "UP" mark is facing up, and then attach the E53- COV17 Terminal Cover to the holes on the top and bottom of the Digital Temperature Controller. E5EC/E5AC/E5EC-T/E5AC-T Slightly bend the E53-COV24 Terminal Cover to attach it to the terminal block as shown in the following diagram. The Terminal Cover cannot be attached in the opposite direction. (1) (1) (2) Individual Mounting Group Mounting A B Vertical: OK Horizontal: NG Adapter Terminal Cover (E53-COV17) (Sold separately) E53-COV17 E53-COV23 Enlarged illustration of Terminal Section Enlarged illustration of the terminal part Slightly bend the E53-COV24 Terminal Cover in the direction shown by the arrows to attach it to the terminal block.
E5@C/E5@C-T 109 Attaching the End Cover E5DC 1. Install the E5DC in a panel. 2. Peel off the release paper from the double-sided tape on the End Cover. 3. Align the tabs on the End Cover with the depressions on the E5DC and attach the End Cover. 4. Secure the End Cover so that the double-sided tape is firmly attached. Removing the Digital Temperature Controller from the case E5GC You can use the Y92F-55 Draw-out Jig to remove the interior body of the Digital Temperature Controller from the case to perform maintenance without removing the terminal wiring. This is possible only for the E5GC. It is NOT possible for the E5CC, E5CC-U, E5EC, E5AC, E5DC, or E5@C-T. Check the specifications of the case and Digital Temperature Controller before removing the Digital Temperature Controller from the case. 1. Insert the Y92F-55 Draw-out Jig securely into the Draw-out Jig insertion holes (one hole each on the top and bottom) and press it in firmly until the hooks engage on the top and bottom. 2. Pull out the Y92F-55 Draw-out Jig together with the front panel. Do not apply unnecessary force. 3. When inserting the body of the Temperature Controller into the case, make sure the PCBs are parallel to each other, make sure that the sealing rubber is in place, and press the E5GC toward the rear case into position. While pushing the E5GC into place, push down on the hooks on the top and bottom surfaces of the rear case so that the hooks are securely locked in place. Be sure that electronic components do not come into contact with the case. Double-sided tape Draw-out Jig insertion hole Draw-out Jig insertion hole Y92F-55 Draw-out Jig Panel Mounting Adapter Hook Hook Right Side View of the E5GC Sealing rubber PCBs Keep the PCBs parallel to each other and inset them into the rear case.
E5@C/E5@C-T 110
- Precautions when Wiring
- Separate input leads and power lines in order to prevent external noise.
- Use a shielded, AWG24 to AWG18 (cross-sectional area of 0.205 to 0.8231 mm2) twisted-pair cable. Use a shielded, AWG24 to AWG14 (cross-sectional area of 0.205 to 2.081 mm2) twisted-pair cable for the E5CC-U. The stripping length is 6 to 8 mm for the E5CC, E5EC, E5AC, E5DC, or E5CC-T and 5 to 6 mm for the E5CC-U. The E5GC stripping length is 6 to 8 mm for models with screw terminal blocks and 8 to 12 mm for models with screwless clamp terminal blocks.
- Use crimp terminals when wiring the terminals.
- Use the suitable wiring material and crimp tools for crimp terminals.
- Tighten the terminal screws to a torque of 0.43 to 0.58 N·m. The specified torque is 0.5 N·m for the E5CC-U.
- For the E5GC, E5CC, E5EC, E5AC, E5DC, or E5@C-T, use the following types of crimp terminals for M3 screws.
- For the E5CC-U, use the following types of crimp terminals for M3.5 screws.
- For E5GC Controllers with screwless clamp terminal blocks, use braided or solid wires with a gauge of AWG24 to AWG18 (equal to a cross-sectional area of 0.205 to 0.823 mm 2). The length of the conductive portion inserted into the terminal must
- Recommended Ferrules for E5GC Screwless Clamp Terminals Three-year Guarantee
- Period of Guarantee The guarantee period of the Unit is three years starting from the date the Unit is shipped from the factory. Scope of Guarantee The Unit is guaranteed under the following operating conditions. 1. Average Operating Temperature (see note): −10°C to 50°C 2. Mounting Method: Standard mounting Note: Average Operating Temperature Refer to the process temperature of the Unit mounted to a control panel and connected to peripheral devices on condition that the Unit is in stable operation, sensor input type K is selected for the Unit, the positive and negative thermocouple input terminals of the Unit are short-circuited, and the ambient temperature is stable. Should the Unit malfunction during the guarantee period, OMRON shall repair the Unit or replace any parts of the Unit at the expense of OMRON. 5.8 mm max. 5.8 mm max. 7.2 mm max. 7.2 mm max. Manufacturer Model number Altech Corp. 2623.0 Daido Solderless Terminal Mfg. Co. AVA-0.5 Nichifu Co. Single (1 wire) TGNTC-1.25-9T TGVTC-1.25-11T TGNTC-1.25-11T TC0.3-9.5 TC1.25-11S-ST TC1.25-11S TC2-11S Double (2 wires) TGWVTC-1.25-9T TGWVTC-1.25-11T 0.8 to 1.4 mm 8 to 12 mm 8 to 12 mm Ferrules wires Top Bottom
Terms and Conditions Agreement Read and understand this catalog. Please read and understand this catalog before purchasing the products. Please consult your OMRON representative if you have any questions or comments. Warranties. (a) Exclusive Warranty. Omron’s exclusive warranty is that the Products will be free from defects in materials and workmanship for a period of twelve months from the date of sale by Omron (or such other period expressed in writing by Omron). Omron disclaims all other warranties, express or implied. (b) Limitations. OMRON MAKES NO WARRANTY OR REPRESENTATION, EXPRESS OR IMPLIED, ABOUT NON-INFRINGEMENT, MERCHANTABILITY OR FITNESS FOR A PARTICULAR PURPOSE OF THE PRODUCTS. BUYER ACKNOWLEDGES THAT IT ALONE HAS DETERMINED THAT THE PRODUCTS WILL SUITABL Y MEET THE REQUIREMENTS OF THEIR INTENDED USE. Omron further disclaims all warranties and responsibility of any type for claims or expenses based on infringement by the Products or otherwise of any intellectual property right. (c) Buyer Remedy. Omron’s sole obligation hereunder shall be, at Omron’s election, to (i) replace (in the form originally shipped with Buyer responsible for labor charges for removal or replacement thereof) the non-complying Product, (ii) repair the non-complying Product, or (iii) repay or credit Buyer an amount equal to the purchase price of the non-complying Product; provided that in no event shall Omron be responsible for warranty, repair, indemnity or any other claims or expenses regarding the Products unless Omron’s analysis confirms that the Products were properly handled, stored, installed and maintained and not subject to contamination, abuse, misuse or inappropriate modification. Return of any Products by Buyer must be approved in writing by Omron before shipment. Omron Companies shall not be liable for the suitability or unsuitability or the results from the use of Products in combination with any electrical or electronic components, circuits, system assemblies or any other materials or substances or environments. Any advice, recommendations or information given orally or in writing, are not to be construed as an amendment or addition to the above warranty. See http://www.omron.com/global/ or contact your Omron representative for published information. Limitation on Liability; Etc. OMRON COMPANIES SHALL NOT BE LIABLE FOR SPECIAL, INDIRECT, INCIDENTAL, OR CONSEQUENTIAL DAMAGES, LOSS OF PROFITS OR PRODUCTION OR COMMERCIAL LOSS IN ANY WAY CONNECTED WITH THE PRODUCTS, WHETHER SUCH CLAIM IS BASED IN CONTRACT, WARRANTY , NEGLIGENCE OR STRICT LIABILITY . Further, in no event shall liability of Omron Companies exceed the individual price of the Product on which liability is asserted. Suitability of Use. Omron Companies shall not be responsible for conformity with any standards, codes or regulations which apply to the combination of the Product in the Buyer’s application or use of the Product. At Buyer’s request, Omron will provide applicable third party certification documents identifying ratings and limitations of use which apply to the Product. This information by itself is not sufficient for a complete determination of the suitability of the Product in combination with the end product, machine, system, or other application or use. Buyer shall be solely responsible for determining appropriateness of the particular Product with respect to Buyer’s application, product or system. Buyer shall take application responsibility in all cases. NEVER USE THE PRODUCT FOR AN APPLICATION INVOLVING SERIOUS RISK TO LIFE OR PROPERTY OR IN LARGE QUANTITIES WITHOUT ENSURING THAT THE SYSTEM AS A WHOLE HAS BEEN DESIGNED TO ADDRESS THE RISKS, AND THAT THE OMRON PRODUCT(S) IS PROPERL Y RATED AND INSTALLED FOR THE INTENDED USE WITHIN THE OVERALL EQUIPMENT OR SYSTEM. Programmable Products. Omron Companies shall not be responsible for the user’s programming of a programmable Product, or any consequence thereof. Performance Data. Data presented in Omron Company websites, catalogs and other materials is provided as a guide for the user in determining suitability and does not constitute a warranty. It may represent the result of Omron’s test conditions, and the user must correlate it to actual application requirements. Actual performance is subject to the Omron’s Warranty and Limitations of Liability. Change in Specifications. Product specifications and accessories may be changed at any time based on improvements and other reasons. It is our practice to change part numbers when published ratings or features are changed, or when significant construction changes are made. However, some specifications of the Product may be changed without any notice. When in doubt, special part numbers may be assigned to fix or establish key specifications for your application. Please consult with your Omron’s representative at any time to confirm actual specifications of purchased Product. Errors and Omissions. Information presented by Omron Companies has been checked and is believed to be accurate; however, no responsibility is assumed for clerical, typographical or proofreading errors or omissions.
Authorized Distributor: In the interest of product improvement, specifications are subject to change without notice. Cat. No. H177-E1-07 0314 (1111) © OMRON Corporation 2011-2014 All Rights Reserved. OMRON Corporation Industrial Automation Company OMRON ELECTRONICS LLC One Commerce Drive Schaumburg, IL 60173-5302 U.S.A. Regional Headquarters OMRON EUROPE B.V. Wegalaan 67-69-2132 JD Hoofddorp The Netherlands Contact: www.ia.omron.com Tokyo, JAPAN OMRON ASIA PACIFIC PTE. LTD. No. 438A Alexandra Road # 05-05/08 (Lobby 2), Alexandra Technopark, Singapore 119967 Tel: (65) 6835-3011/Fax: (65) 6835-2711 OMRON (CHINA) CO., LTD. Room 2211, Bank of China Tower,
200 Yin Cheng Zhong Road,
PuDong New Area, Shanghai, 200120, China Tel: (86) 21-5037-2222/Fax: (86) 21-5037-2200